77
Used At: Author: Notes: 1 2 3 4 5 6 7 8 9 10 Date: Rev: READER DATE WORKING DRAFT RECOMMENDED PUBLICATION Project: Node: Title: Number: Page: CONTEXT: Flow Diagram 10/10/01 10/3/2007 A-0 Flow Diagram TOP 1 Purpose: Viewpoint: California Water Plan Update 2009 DWR Develop Flow Diagram 0 A0 Precip Data Water Portfolio Actual Year Flow Diagram Supply and Balance Work Team Water and Wastewater Agencies Water Use Work Teams Computer Technology California Water Plan Update 2009 A2

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Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

Rev:

READER DATEWORKING

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RECOMMENDED

PUBLICATION

Project:

Node: Title: Number:

Page:

CONTEXT:

Flow Diagram

10/10/01

10/3/2007

A-0 Flow Diagram

TOP

1

Purpose:

Viewpoint:

California Water Plan Update 2009

DWR

Develop Flow Diagram

0

A0

Precip Data

Water Portfolio

Actual Year Flow Diagram

Supply and Balance Work Team

Water and Wastewater Agencies

Water Use Work Teams Computer Technology

California Water Plan Update 2009 A2

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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RECOMMENDED

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Project:

Node: Title: Number:

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CONTEXT:Supply & Bal Workteam

Flow Diagram

10/10/01

10/3/2007

A0 Develop Flow Diagram

A-0

2

Determine Precipitation &

Runoff1

A1Determine

Surface Water2

A2 Determine Recycled

Water3

A3Determine

Groundwater4

A4Compile Water

Use 5

A5

Compile Flow Diagram

6

A6

Water Portfolio

Supply and Balance Work Team

Actual Year Flow Diagram

Actual Year Precipitation and Runoff Data

Actual Year Reclaimed Water

Actual Year Groundwater

Actual Year Water UseAW & ETAW

Water and Wastewater Agencies

Water Use Work Teams

Groundwater Experts

Precip Data

Computer Technology

Actual Year Surface Water

California Water Plan Update 2009 A2

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Project:

Node: Title: Number:

Page:

CONTEXT:

Flow Diagram

10/10/01

10/10/2001

A1 Determine Precipitation & Runoff

A0

3

Acquire Precipitation

Data1

A11

Estimate Runoff

2

A12

Estimate Total Groundwater

Natural Recharge 3

Compile Precipitation and Runoff

Data 4Actual Year Precipitation and Runoff Data

Water Portfolio Item 5

Water Portfolio Items 6 and 53

Water PortfolioItem 7

Actual YearPrecipitation

Actual YearRunoff Data

Actual Year Groundwater Natural Recharge

Historical Precipitation Prism polygon layer

Streamgage Data

Groundwater Experts

Supply and Balance Work Team

Water Portfolio

Precip Data

Isohyetal Map

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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PUBLICATION

Project:

Node: Title: Number:

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CONTEXT:

Flow Diagram

11/16/2007

11/16/2007

A11 Acquire Precipitation Data

A1

4

Acquire historical

average precip PRISM

polygons from Oregon State

university 1 Acquire historical

average and actual year individual

station precip data 2

Compute actual year %

of average based upon individual

station data3 Develop actual year % of average polygons 4

Water Portfolio Item 5

Historical Precipitation Prism polygon layer

Supply and Balance Work Team

Isohyetal Map

Precip Data

Actual YearPrecipitation

Multiply historical

average precip polygon layer by actual polygon

layer 5

Actual year % of average precip polygon GIS layer

Actual year % of avg polygons

Historical average and actual year precip data

GIS historical precipitation layer

PRISM Spatial Climate Layers

Used At:

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Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Project:

Node: Title: Number:

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CONTEXT:

Flow Diagram

10/10/01

10/10/2001

A12 Estimate Runoff

A1

5

Estimate Natural Runoff

1

Estimate Remaining

Runoff Flow to Salt Sinks 2

Estimate Incidental

Runoff3

Compile Runoff Data

4

Streamgage Data

Water Portfolio Item 53

Water PortfolioItem 6b

Actual Year Natural RunoffData

Actual YearRemaining NaturalRunoff Flow to Salt Sink

Actual Year Incidental Runoff Data

Actual YearRunoff Data

Supply and BalanceWork Team

WP Item 6a

Water Portfolio Items 6 and 53

When stream gage data is unavailable for a given basin, neighboring stations from adjacent basins are used to estimate flow. For example, there is no specific streamgage to read at the Carquinez Strait or the Golden Gate Bridge.

Used At:

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Node: Title: Number:

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CONTEXT:Supply & Bal Workteam

Flow Diagram

10/10/01

10/3/2007

A2 Determine Surface Water

A0

7

Acquire State & Federal

Surface Water Project

Information1

A21

Calculate Surface Water In Storage and

Distribute 2Acquire Water

Transfer Information and

Distribute 3

Acquire Local Deliveries

Information4

A24 Estimate Inflows and

Outflows5

A25Compile

Known Surface Water

Information6

Water Portfolio

Spreadsheets

Water PortfolioItems 26 & 30

Water PortfolioItems 14

Precip Data

Supply and BalanceWork Team

Water and Wastewater Agencies

Actual Year State & FederalSurface Water Project Information

Actual Year Surface WaterIn Storage

Actual Year Water Transfer Info

Actual Year LocalDeliveries Info

Actual Year Inflows and Outflows

Beginning/End of Year Storage Data

Water Transfer Data

WP Item 9, Local Deliveries

WP, Item 10, Local Imported Deliveries

Water Portfolio

Local Deliveries and Local Imported Deliveries DataOut of State

Inflows and Outflows

Actual Year Surface Water

Actual Year Precipitation and Runoff Data

Used At:

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Notes: 1 2 3 4 5 6 7 8 9 10

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CONTEXT:Supply & Bal Workteam

Flow Diagram

10/10/01

10/3/2007

A21 Acquire State & Federal Surface Water Project Information

A2

8

Acquire SWP Delivery Data

1

A211

Acquire CVP (Base & Project)

Delivery Data2

A212Acquire

Colorado River Delivery Data

3

A213Acquire Other

Federal Deliveries Data

4

A214 Compile State and Federal

Water Project Data 5

Supply and BalanceWork Team

Water and Wastewater Agencies

Water Portfolio Item 13

Water PortfolioItem 11

Water Portfolio Item 1

Water PortfolioItem 12

Spreadsheets

Actual YearOther FederalDeliveries Data

Actual Year Colorado RiverDelivery Data

Actual Year CVP Delivery Data

Actual Year SWPDelivery Info

USBR

COE

Actual Year State & FederalSurface Water Project Information

Water Portfolio

Precip Data

SWP Deliveries

CVP Delivery Data

Colorado River Deliveries

Other Federal Deliveries Colorado River Board

Water Portfolio

Used At:

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CONTEXT:Supply & Bal Workteam

Flow Diagram

10/15/2001

10/3/2007

A211 Acquire SWP Delivery Data

A21

9

Acquire SWP Deliveries by

Agency1

Distribute Deliveries by HR/PSA/DAU

2

Obtain MWD Deliveries

3

Compare Deliveries

4

Remove Water Used for

CVWD/DWA/MWD

Recharge 5Insert Data into Water Budget

6

Water and Wastewater Agencies

Supply and BalanceWork Team

SWP Sim

Water Portfolio Item 13

Actual Year SWPDelivery Info

SWP Deliveries

Bulletin 132Table B5A or B5B

SWP Deliveries

MWDSC Staff

MWDSCSWPDeliveries

Deliveries Do Not Match

Deliveries Match

Total Water Deliveries

Recharge Water

SWP Deliveries

Obtain MWD Deliveries For Southern California District Only

Used At:

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CONTEXT:Supply & Bal Workteam

Flow Diagram

12/7/01

10/3/2007

A212 Acquire CVP (Base & Project) Delivery Data

A21

11

Acquire CVP Deliveries Data

1

Separate into Base and Project

Deliveries 2

Distribute by HR/PSA/DAU

3

Insert into Water Budget

4

CVP Delivery Data

Water PortfolioItem 11

Supply and BalanceWork Team

Local Agencies USBR

Actual Year CVP Delivery Data

Land Use Method

CVP Deliveries

CVP Deliveries separated into Base and Project

Deliveries by HR/PSA/DAU

Used At:

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Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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CONTEXT:Supply & Bal Workteam

Flow Diagram

10/15/2001

10/3/2007

A213 Acquire Colorado River Delivery Data

A21

12

Acquire Colorado River Deliveries from Water Agency

1

Distribute Deliveries by

DAU2

Acquire MWDSC Delivery

Information3

Input into Water Budget

5

Supply and BalanceWork Team

Local Agencies

Water Portfolio Item 1

Actual Year Colorado RiverDelivery Data

Colorado River Board

USBR

Compare Deliveries

4

Deliveries Match

Deliveries Don't Match

Colorado River Deliveries

Colorado River Deliveries by DAU

Colorado RiverDeliveries by DAU

Colorado River Deliveries

Acquire Colorado River Deliveries from Water Agency Water Agencies/Col.River contractors being:

Coachella Valley Water DistrictImperial Irrigation DistrictMetropolitan Water DistrictPalo Verde Irrigation DistrictPalo Verde Irrigation District(mesa lands)Yuma Project, California portion(per B160-87, pg. 28)

Acquire MWDSC Delivery Information For South Coast Region Only

Used At:

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CONTEXT:Supply & Bal Workteam

Flow Diagram

10/15/2001

10/3/2007

A214 Acquire Other Federal Deliveries Data

A21

14

Acquire Other Federal

Deliveries by Reservoir 1

Distribute by HR/PSA/DAU

2

Insert Information into Water Budget

3

COE

Supply and BalanceWork Team

Local Agencies

Water PortfolioItem 12

Actual YearOther FederalDeliveries Data

Other Federal Deliveries

Other Federal Deliveries by HR/PSA/DAU

Other Federal Deliveries

Land Use Method

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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CONTEXT:Supply & Bal Workteam

Flow Diagram

10/10/01

10/3/2007

A24 Acquire Local Deliveries Information

A2

15

Acquire Local Imported Deliveries Data and Distribute by HR/PSA/DAU

1

Acquire Local Delivery Data

2

Compile Local Deliveries Info

3

Local Agencies

Supply and BalanceWork Team

Actual Year Local Deliveries Data

Actual Year Local Imported Deliveries Data

Actual Year LocalDeliveries Info

Local Deliveries and Local Imported Deliveries Data

WP Item 9, Local Deliveries

WP, Item 10, Local Imported Deliveries

Land Use Method

Used At:

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Notes: 1 2 3 4 5 6 7 8 9 10

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CONTEXT:Supply & Bal Workteam

Flow Diagram

10/10/01

10/3/2007

A25 Estimate Inflows and Outflows

A2

16

Estimate Inflow from Oregon

1

Estimate Inflow from Mexico

2

Estimate Outflow to Nevada

3

Estimate Outflow to

Oregon4

Calculate Outflow to

Mexico5

Compile Inflow and Outflow

Data 6

Supply and BalanceWork Team Member

Actual Year Inflow from Mexico Actual Year

Outflow to Nevada

Actual YearOutflow to Oregon

Acutal Year Outflow to Mexico

Water PortfolioItem 4a

Water Portfolio Item 4b

Water Portfolio Item 54a

Water Portfolio Item 54b Water Portfolio Item 54c

Actual YearInflow from Oregon

Land Use Method

Spreadsheets

USBR-KlamathProject Office

Irrigation Districts -Klamath- Tule Lake

Actual Year Inflows and Outflows

Water Portfolio

Out of State Inflows and Outflows

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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CONTEXT:Supply & Bal Workteam

Flow Diagram

10/10/01

10/3/2007

A3 Determine Recycled Water

A0

17

Quantify Ocean Desalination

1

A31Compile Recycled

Water Data2

A32Estimate Water from Refineries

3

A33

Compile Reclaimed

Water Information5

Actual Year Reclaimed Water

Water PortfolioItem 2

Water Portfolio Item 19

Water PortfolioItem 3

Actual Year Ocean Desalination

Actual Year Recycled Water

Actual YearWater fromRefineries

Local Delivery Data A24

Local Delivery DataA24

Local Delivery Data A24

Water and Wastewater Agencies

Estimate Recycled

Water from Ag Operations 4

A34

Actual YearRecycled Water from Agriculture

Precip Data

Supply and Balance Work Team

Water Portfolio

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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PUBLICATION

Project:

Node: Title: Number:

Page:

CONTEXT:Supply & Bal Workteam

Flow Diagram

10/15/2001

10/10/2007

A31 Quantify Ocean Desalination

A3

18

Acquire Desalting

Information by Plant 1

Distribute by HR/PSA/DAU

2

Quantify Ocean Desal

3

Water PortfolioItem 2

Actual Year Ocean Desalination

Local Delivery DataA24

Desalting Information

Desal Information by Plant

Ocean Desal by HR/PSA/DAU

Precip Data

Supply and Balance Work Team

Water and Wastewater Agencies

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

Rev:

READER DATEWORKING

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RECOMMENDED

PUBLICATION

Project:

Node: Title: Number:

Page:

CONTEXT:Supply & Bal Workteam

Flow Diagram

10/15/2001

10/10/2007

A32 Compile Recycled Water Data

A3

19

Acquire Recycled

Water Data

1

Distribute by HR/PSA/DAU

2

Compile Recycled H2O

Data3

Water Portfolio Item 19

Water and Wastewater AgenciesLocal Delivery Data A24

Actual Year Recycled Water

Recycled Water Data

Recycled Water Data

Recycled Water by HR/PSA/DAU

Supply and Balance Work Team

Precip Data

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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PUBLICATION

Project:

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CONTEXT:Supply & Bal Workteam

Flow Diagram

10/15/2001

10/10/2007

A33 Estimate Water from Refineries

A3

20

Acquire Data from Refineries

1

Distribute by HR/PSA/DAU

2

Compile Water From

Refineries3

Water PortfolioItem 3

Actual YearWater fromRefineries

Local Delivery Data A24

Water from Refineries by HR/PSA/DAU

Total Water from RefineriesRefinery Water Recycling Data

Supply and Balance Work Team

Precip Data

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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PUBLICATION

Project:

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CONTEXT:Supply & Bal Workteam

Flow Diagram

10/15/2001

10/10/2007

A34 Estimate Recycled Water from Ag Operations

A3

21

Acquire Data from Ag Water

Users1

Distribute by HR/PSA/DAU

2

Compile Recycled

Water from Ag Operations 3

Water Portfolio Item 19

Local Water Districts

Actual YearRecycled Water from Agriculture

Estimate of Recycled Water from Ag Users

Recycled Water from Ag by HR/PSA/DAU

Supply and Balance Work Team

Ag Water Recycling Data

Precip Data

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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PUBLICATION

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Node: Title: Number:

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CONTEXT:Supply & Bal Team

Flow Diagram

10/10/01

10/10/2007

A4 Determine Groundwater

A0

22

Estimate Groundwater in

Storage1

A41

Estimate Total Groundwater

Banking Recharge 2

A42

Compile Groundwater Information

3

Actual Year Groundwater

Water PortfolioItems 27,28,29,31,32,33

Water Portfolio Item 8

Actual Year Groundwater in Storage

Actual YearGroundwater Banking Recharge

Groundwater Storage Data

Adjudicated Basin GW Storage

Groundwater Experts

Land Use Method

Water Portfolio

Precip Data

Supply and Balance Work Team

Local Agencies

MWD

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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PUBLICATION

Project:

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Page:

CONTEXT:Supply & Bal Workteam

Flow Diagram

10/15/2001

10/10/2007

A41 Estimate Groundwater in Storage

A4

23

Acquire Information for

Adjudicated Basins 1

Acquire Information for

Non-Adjudicated

Basins 2Compile

Groundwater Information

3

Distribute GW Information by HR/PSA/DAU

4

Determine GW in Storage

5

Water PortfolioItems 27,28,29,31,32,33

Groundwater Storage Data

Groundwater Experts

Land Use Method

Actual Year Groundwater in Storage

Information on Adjudicated Basins

Estimates of GW in Non-Adjudicated Basins

GW Information by Basin

GW by HSA/PSA/DAU

Supply and Balance Work Team

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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CONTEXT:Supply & Bal Workteam

Flow Diagram

10/15/2001

10/10/2007

A42 Estimate Total Groundwater Banking Recharge

A4

24

Acquire Information for

Adjudicated Basins 1

Acquire Information for

Non-Adjudicated

Basins 2Compile Total Groundwater

Basin Information3

Distribute by HR/PSA/DAU

4

Estimate Total Groundwater

Banking Recharge 5

Water Portfolio Item 8

Adjudicated Basin GW Storage

Actual YearGroundwater Banking Recharge

Local Agencies

Adjudicated Basin Groundwater Information

Non-AdjudicatedBasin GroundwaterEstimates

Groundwater Estimates

Groundwater by HSA/PSA/DAU

Groundwater Experts Supply and Balance Work Team MWD

Non-Adjudicated Basin GW Storage

Used At:

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Flow Diagram

10/19/2001

10/10/2007

A5 Compile Water Use

A0

25

Determine Ag Applied Water

1

A51

Determine Environmental

Water Use2

A52

Estimate Urban Water Use

3

A53

Compile Actual Year Water Use

4

Precip Data

Water Use Work Teams

Water Portfolio

Supply and Balance Work Team

Actual Year Water UseAW & ETAW

Actual Year Ag Applied Water

Yearly EnvironmentalWater

Yearly Urban Water Use for Each DAU/County Study Area

Used At:

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CONTEXT:Tipton/Kofoid

Flow Diagram

10/1/2001

10/10/2007

A51 Determine Ag Applied Water

26

Determine Irrigated

Agricultural Acreage 1

A511 Determine Effective Precip and ETAW Unit

Rate 2

A512

Determine Irrigation

Efficiencies3

A513

Determine Ag Applied Water

4

Soils Information

Crop Acreage

Crop Information

Pre-selected Panel of Irrigation Experts

ETAWModel

Ag & Urban Workteam

USGSPaperQuads

Image ProcessingProgram

Irrigation Efficiencies by Crop by DAU by County

Unit ETAW byCrop by DAUby County

Irrigated Acresby Crop by DAU by County

Precipitation

Actual Year Ag Applied Water

Precip Data

Water Portfolio

WP, Item 37, Ag Use

Water Use Work Teams

Evaporation Information

Irrigation Efficiencies

Irrigation Methods

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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CONTEXT:Ag& Urban Workteam

Flow Diagram

10/1/2001

10/10/2007

A511 Determine Irrigated Agricultural Acreage

27

Determine Actual Year Land Use Survey Data by DAU by County

1

A5111

Compare Previous

Survey with AC Crop Report of

Same Year3Apply

Adjustment Factors to

Actual Year AC Crop Report

Data 4 Disaggregate Estimated Acreage to

DAU by County5 Total Actual

and Estimated Crop Acres by DAU by County

6

Crop Acreage

Ag & Urban Workteam

Image ProcessingProgram

USGSPaperQuads

Irrigated Acresby Crop by DAU by County

Actual Net Irrigated Crop Acres by DAU by County

Adjustment Factors

Estimated CropAcreage by County

Estimated CropAcres by DAUby County

Compile Actual Year Land Use

Survey Data2

Actual Net Irrigated Crop Acres by DAU by County

Water Portfolio

Cropping Pattern

DAU by County Acreage Percentage

Precip Data

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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CONTEXT:Ag & Urban Workteam

Flow Diagram

11/6/2001

10/11/2007

A5111 Determine Actual Year Land Use Survey Data by DAU by County

28

Acquire Aerial Imagery

1

Develop Field Sheets

2

A51112Conduct Field

Reconnaissance3

Develop Final Digital Field Boundaries

and Attributes4

A51114 Incorporate DAU Layer and

Gross/Net Corrections

5

A51115

Aerial Photos

Field Sheets

Completed Field Sheets

Final Land Use GIS Layer

DAU Boundaries

Water Portfolio

USGSPaperQuads

Ag & Urban Workteam

Image Processing Program

Actual Net Irrigated Crop Acresby DAU by County

Scanned Aerial Image Files

Flight Plan

Precip Data

Crop Acreage

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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CONTEXT:Ag & Urban Workteam

Flow Diagram

11/6/2001

10/11/2007

A51112 Develop Field Sheets

29

Scan Aerial Photography

1

Plot Scanned Aerial

Photography2

Delineate Field Boundaries onto USGS Quads using

Aerial Photography

3 Compile Field Sheets

4

AG and Urban Workteam

Aerial Photos

Field Sheets

Scanned Aerial Image Files

Plotted Scanned Aerial Photographs

USGS Paper Quadswith Field Delineations

Water Portfolio

Scanner

Plotter

USGS PaperQuads

Scanned Aerial Image Files

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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CONTEXT:Ag & Urban Workteam

Flow Diagram

11/6/2001

10/11/2007

A51114 Develop Final Digital Field Boundaries and Attributes

30

Rectify Aerial Image

1

Digitize Field Boundaries

and Attributes on Screen 2

Digitize Field Boundaries

and Attributes for Paper Field

Sheets 3

Incorporate Quality Control

4

AG and Urban Workteam

Completed Field Sheets

Final Land Use GIS Layer

Water Portfolio

Corrected Digital Photoquads

Draft Digital Land Use Quad Layers

Draft Digital Land Use Quad Layers

Digitizing Tablet

Satellite Imagery (SPOT)

Image ProcessingProgram

Scanned Aerial Image Files

Precip Data

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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CONTEXT:Ag & Urban Workteam

Flow Diagram

11/6/2001

10/11/2007

A51115 Incorporate DAU Layer and Gross/Net Corrections

31

Create Intersection of DAU and Land

Use Layers1

Develop Gross Crop Acreage

by DAU by County 2

Incorporate Gross/Net

Corrections3

AG and Urban Workteam

Final Land Use GIS Layer

Water Portfolio

Intersection of DAU and Land Use GIS Layers

Gross Crop Acres by DAU by County

Gross/Net Coefficients

DAU Boundaries

Actual Net Irrigated Crop Acresby DAU by County

Adjust Spring and Truck Crop

Acres4

Net Crop Acres by DAU by County from Survey Data

Precip Data

Crop Acreage

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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CONTEXT:Water Use Workteam

Flow Diagram

10/4/2001

10/11/2007

A512 Determine Effective Precip and ETAW Unit Rate

32

Compile Precipitation

Data1

Compile Planting and

Harvest Dates2

Compile Pan Evaporation or

CIMIS Data3

Compile Crop Coefficients

4

Compile Crop Rooting Depth and Available Soil Moisture

5

Compute ETAW, ET and Effective Precip

6

Soils Information

ETAWModel

Crop Information

Unit ETAW byCrop by DAUby County

PrecipitationDaily Precipitation

Planting and Harvest Dates by Crop by DAU

Daily Pan Evaporation and CIMIS Information by DAU

Crop Coefficients by Crop

Rooting Depthsand AvailableSoil Moisture by DAU

Water Use Work Teams

Water PortfolioWP, Item 36, Ag Effective Precip on Irr Lands

WP, Item # 47a, ETAW - Ag

Crop Calendars

Evaporation Information

ETo

Pan Evaporation

Crop Coefficients

Soil Survey Information

Soils, Rooting Depth Information

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

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Flow Diagram

10/4/2001

10/11/2007

A513 Determine Irrigation Efficiencies

33

Compile DWR Existing Data

1

Modify Existing DWR Data

2

Submit for Peer Review

3

Incorporate Peer Review Comments

4Pre-selected Panel of Irrigation Experts

Irrigation Efficiencies

Irrigation Efficiencies by Crop by DAU by County

Compiled Data

Irrigation Efficienciesand Documentation

Peer Review Comments

Water PortfolioWP, Item 49, Incidental E and ET Ag Return Flows

Ag & Urban Workteam

Irrigation Methods

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

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Flow Diagram

10/10/2001

10/11/2007

A52 Determine Environmental Water Use

34

Determine Managed Wetlands

Water Use 1

A521 Compile Instream

Requirements & Actual Flows2

A522 Determine Wild and Scenic

Rivers Water 3

A523 Compile Delta Actual & Required Outflow 4

A524Determine

Other Environmental

Water Uses5

A525

Compile Environmental

Water Use6

Water Portfolio

Environmental Water Work Team

Mass Balance Method

Yearly ManagedWetlands Water Use

Yearly Instream Requirements, Actual Flows & Unmet Amounts

Yearly Wildand Scenic RiversWater

Yearly Bay Delta Outflow

OtherEnvironmentalWater

Water Supply and Balance Workteam

Data

Precip Data

Yearly EnvironmentalWater

Water Use Work Teams

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

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Flow Diagram

10/10/2001

10/11/2007

A521 Determine Managed Wetlands Water Use

35

Identify Wetland

Resources1

Determine Wetland

Acreage by Habitat Type

2

A5212 Develop Wetland Water

Use Characteristics

Irrigation Schedule

3

A5213

Develop ET, EP & ETAW of

Wetland Vegetation/

Habitat Types4

A5214

Calculate Managed Wetlands

Water Use5

Water Portfolio

Mass Balance Method

Environmental Water Work Team

Yearly ManagedWetlands Water Use

Data Availability

General Wetland Information

Actual WetlandAcreage by Habitat Type

Wetland WaterUse Characteristics

Water Portfolio

ETAW of WetlandVegetation by Habitat Type

Water Supply by Source Information

Outflow from Refuge Information

Precip Data

Water Supplyand Balance Workteam

Habitat Acreage

DWR Land Use Section

Name & Locationof Refuges

Information on how fields are managed

ETAW Data

Actual Wetland Acreage by Habitat Type

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

10/10/2001

10/11/2007

A5212 Determine Wetland Acreage by Habitat Type

36

Collect Acreage of Seasonal

Marsh 1Collect

Acreage of Permanent

Marsh 2

Collect Acreage of

Brood Ponds3

Collect Acreage of 'Wetland

Vegetation' Management4 Collect

Acreage of Forage Crops

5

Determine Wetland

Acreage by Habitat Type

6

Environmental Water Work Team

General Wetland Information

Actual WetlandAcreage by Habitat Type

Data Availability

Acres of Seasonal Marsh

Acres of Permanent Marsh

Acres of Brood Ponds

Acres of Water Grass Management

Acres of Forage Crops

Habitat Acreage

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

10/10/2001

10/11/2007

A5213 Develop Wetland Water Use Characteristics Irrigation Schedule

37

Identify Flood-Up Date

(Seasonal only)1

Identify Drawdown

Date(Seasonal only)2

Identify Water Depth

Management3

Evaluate Field Seepage

Characteristics4

Identify Circulation

Flow Management &

Quantities 5Develop

Wetland Water Use

Characteristics6

Environmental Water Work Team

Actual WetlandAcreage by Habitat Type

Wetland WaterUse Characteristics

Data Availability

Flood Up Date

Total Number of Days Fields are Submerged

Depth of Water in Fields

Seepage (Deep Percolation)by Field by Habitat Type

Water Used forCirculation FlowManagement

Estimate of Irrecoverable Losses(WP Item 18c)

Identification of Soil Characteristics

Information on how fields are managed

Flood-up date

Drawdown date

Estimated depth of fields

Gross estimate of add'l inflow and outflow for circulation

Professional Judgement

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

10/11/2001

10/11/2007

A5214 Develop ET, EP & ETAW of Wetland Vegetation/ Habitat Types

38

Evaluate Seasonal

Marsh ET, EP & ETAW 1

Evaluate Permanent

Marsh ET, EP, & ETAW 2

Evaluate Summer 'Wetland

Vegetation' ET, EP, &

ETAW 3 Evaluate Forage Crops

ET, EP, & ETAW 4

Calculate Total ETAW/

Evaporation5

Environmental Water Work Team

Wetland WaterUse Characteristics

ETAW of WetlandVegetation by Habitat Type

Habitat or Rice Coefficient

Pan Evaporationwith or w/o LakeEffect Reduction

Crop ETAW Model

Ag Water UseWorkteam

Data Availability

Precipitation

ForageCrop ETAW

SummerGrass ETAW

Permanent Marsh ETAW

Seasonal Marsh ETAW

Water Portfolio

ETAW Data

Actual Wetland Acreage by Habitat Type

Precip

Pan Evap Method

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

10/11/2001

10/11/2007

A522 Compile Instream Requirements & Actual Flows

39

Identify Legal Instream

Requirements1

Obtain Measured

Releases (per downstream Reservoir for RIM Station)

2

Quantify Unmet Entitlements, If

Any4

Water Portfolio

Environmental Water Work Team

Yearly Instream Requirements, Actual Flows & Unmet Amounts

Environmental Laws, Decisions, Agreementsand Regulations Legal Instream Requirements

Measured Releases

Comparison of requirements vs. actual flows

Streamgage Data

Reservoir Release Data

Precip Data

Compare Requirements and Releases

3

Environmental Laws, Agreements and Regulations Court Decisions, SWRCB Orders, Agreements between owner/operator and decision maker

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

10/11/2001

10/11/2007

A523 Determine Wild and Scenic Rivers Water

41

Identify Wild and Scenic

Rivers by Legal Reach 1

Obtain Unimpaired Runoff Data

&/or Measured Streamflow by

River 2

Adjust Measured Data

for River Reach, if

Necessary 3

Environmental Water Work Team

Water Portfolio

Yearly Wildand Scenic Rivers Water

Data

List of Wild and Scenic Rivers

Measured Streamflow Data by River

General Rational Method (CIA)

The California Wild and Scenic Rivers Act of 1972The 1968 National Wild

and Scenic Rivers Act

GIS

CDEC Full Natural Flow Reports, Streamgage Data, Bulletin 1

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

12/7/01

10/11/2007

A524 Compile Delta Actual & Required Outflow

A52

42

Obtain DAYFLOW

Data 1

Obtain Minimum Required Outflow 2

Insert into Water Budget

4

Water Portfolio

Precip Data

Environmental Water Work Team

Yearly Bay Delta Outflow

DWR ESO or Website

Actual Delta Outflow

D-1641 Legislation

Check with DWR

O&M(JOC) for their review3

Envr. work team staff and O&M JOC staff

Minimum Required Delta Outflow and Actual Delta Outflow

DWR Operations Scheduling Section

Review of data

Minimum Required Delta Outflow

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

10/11/2001

10/11/2007

A525 Determine Other Environmental Water Uses

43

Determine E and ET from

Native Vegetation 1

Determine Evaporation from Natural Lakes and Reservoirs 2

Determine Environmental Water Account

Use(n/a 1998 &

2000) 3 Compile Other Environmental

Water Uses and Distribute

by HR 4

OtherEnvironmentalWaterEnvironmental

Water AccountUse

Actual Year Evaporation from Lakes and Reservoirs

Actual Year Evaporationand ET from Native Vegetation

Environmental Water Work Team

Water Supply and Balance Workteam

Water Portfolio

Precip

EWA Data

Pan EvaporationMethod

Mass Balance Method

Precip Data

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

Rev:

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CONTEXT:Ag & Urban Workteam

Flow Diagram

10/11/2001

10/15/2007

A53 Estimate Urban Water Use

44

Estimate Public Supply Urban Water Use by

Water Use Sector for Each DAU/ County Study Area1

A531 Estimate Self Supplied Urban Water Use by

Water Use Sector for Each DAU/ County Study Area

2

A532

Compute Yearly Urban Water Use

Overall and by Water Use

Sector for Each DAU/ County Study Area3

Ag and Urban Workteam

Yearly Public Supply Urban Water Use by Water Use Sector for each DAU/County Area

Yearly Self-Supplied Urban Water Use for each DAU/ County Study Area

Yearly Urban Water Use for Each DAU/County Study Area

Precip Data

Water Portfolio

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

10/11/2001

10/15/2007

A531Estimate Public Supply Urban Water Use by Water Use Sector for Each DAU/

County Study Area

45

Compute Per Capita Public Water System Production for

Each PWS (Overall and by

Water Use Sector)

1

Compute Per Capita Public Water System Production for

each DAU/County Study Area3

Compute Public Supply

Water Use Overall and by

Water Use Sector for each

DAU/County Study Area4

Ag and Urban Workteam

Water Portfolio

Yearly Public Supply Urban Water Use by Water Use Sector for each DAU/County Area

Public Supply Urban Water Use by Water Use Sector

Population Weighted Average Per Capita Public System Water Production: - Overall - Single Family Residental - Multi-Family Residental - Commercial/Institutional - Industrial - Public - Other (Fire suppression, street cleaning, line flushing, construction temporary meters).

Precip Data

Select Representative Water Systems

for DAU/County Study Area2

Public Water System Statistics Data

Study Area Boundaries

List of Selected Water Systems

Population Served by Public Water Systems

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

8/21/2007

10/15/2007

A532Estimate Self Supplied Urban Water Use by Water Use Sector for Each DAU/

County Study Area

A53

46

Select Representative Water Systems for Rural Self-

Supplied Water User for

DAU/County Study Area1

Determine Self-supplied Industrial

Water Use and Other Large

Water Use for each

DAU/County Study Area2

Estimate Rural Self-Supplied Water Use for

each DAU/County Study Area3 Compute Self-

Supplied Water Use for Each DAU/County Study Area4

Water Use Work Teams

Precip Data

Yearly Self-Supplied Urban Water Use for each DAU/ County Study Area

Public Water System data

Commercial and Industrial Employment data

Total Population and Population Served by Public Water Systems data

Per Capita Public System Water Production

Water Use by Large Self-Supplied Water User

Rural Self-Supplied Water Use

Water Portfolio

A5322 - Does that mean High Water Use or Large Landscape??

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

10/19/2001

8/31/2007

A6 Compile Flow Diagram

A0

47

Apply Depletion

Water Balance2

A62Apply Net

Water Balance3

A63Apply Applied Water Balance

4

A64Balance Water Portfolio Flow

Diagram5

Supply and Balance Work Team

Actual Year Groundwater

Actual Year Flow Diagram

Actual Year Reclaimed Water

Actual Year Water UseAW & ETAW

Depletion Water Balance

Net Water Balance

Applied Water Balance

Professional JudgementWater Use WorkTeams

Computer Technology

Actual Year Surface Water

Apply Inflow-Outflow Method

1

A61

inflow-outflow water balance

depletion iteration

net iteration

applied iteration

Applied Water

Water Portfolio

Actual Year Precipitation

California Water Plan Update 2009 A2

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

8/31/2007

10/30/2007

A61 Apply Inflow-Outflow Method

A6

48

Develop Applied Water

1

Determine Return Flow

2

A612Determine

Irrecoverable Water

3

A613

Develop Supply

4Develop Inflow-Outflow Water

Balance by Sector & Total 5

Actual Year Groundwater

Actual Year Water UseAW & ETAW

Actual Year Reclaimed Water

Actual Year Surface Water

applied iteration

net iteration

depletion iteration

inflow-outflow water balance

supply iteration

Return Flow

Irrecoverable Water

water supply

Applied Water

Supply and Balance Work TeamComputer Technology

relational factors

Agricultural Applied Water

Managed Wetlands Applied Water

Applied Water

Water Portfolio

Actual Year Precipitation

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

9/5/2007

10/30/2007

A612 Determine Return Flow

A61

49

Develop Deep Percolation and

Conveyance Deep Perc 1

A6121 Determine Return Flow to

Developed Supply 2

A6122

Supply and Balance Work Team

Computer Technology

Return FlowCompile Return Flows

5

Determine Reuse including return

flow within service areas

3

A6123

Deep Perc by Sector

Return Flow by Sector

Reuse by Sector

relational factors

Applied Water

Actual Year Water UseAW & ETAW

net iteration

supply iteration

data

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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CONTEXT:Tipton

Flow Diagram

9/11/2007

10/30/2007

A6121 Develop Deep Percolation and Conveyance Deep Perc

A612

50

Compute Conveyance Deep Perc by

sector 1

A61211Compute

Applied Water Deep Perc by

sector 2

A61212compute

subsurface outflow by

sector 3

A61213

Compile total deep perc by

sector4

relational factors

Applied Water

Computer TechnologySupply and Balance Work Team

Deep Perc by Sector

supply iteration

net iterationconveyance deep perc

AW deep perc

subsurface outflow by sector

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

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Flow Diagram

9/11/2007

10/30/2007

A61211 Compute Conveyance Deep Perc by sector

A6121

51

Use developed supply by

sector1

develop conveyance deep perc relational factors 2

Compile conveyance deep perc by

sector 3

Applied Water

Supply and Balance Work Team

Computer Technology

relational factors

supply iteration

net iteration

conveyance deep perc

developed supply

conveyance deep perc relational factors

developed supply

Used At:

Author:

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Date:

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CONTEXT:Tipton

Flow Diagram

9/11/2007

10/30/2007

A61212 Compute Applied Water Deep Perc by sector

A6121

52

Use applied water by sector

1

Determine AW Deep Perc relational factors 2

Compile AW Deep Perc by

sector3

Supply and Balance Work Team Computer Technology

supply iteration

net iteration

relational factors

Applied Water

AW deep perc

applied water

applied water

AW Deep Perc relational factors

Used At:

Author:

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Date:

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Flow Diagram

9/11/2007

10/30/2007

A61213 compute subsurface outflow by sector

A6121

53

Use Applied Water

1

Determine subsurface

outflow relational factors 2

Compile subsurface outflow by

sector 3

Supply and Balance Work Team Computer Technology

supply iteration

net iteration

relational factors

Applied Water

subsurface outflow by sector

Applied WaterApplied Water

subsurface outflow relational factors

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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CONTEXT:Tipton

Flow Diagram

9/11/2007

9/11/2007

A6122 Determine Return Flow to Developed Supply

A612

54

Determine Return Flow to

developed supply by

sector 1

A61221Determine

conveyance return flow to

developed supply by

sector 2

A61222Compile total return flow to

developed supply 3

relational factors

Applied Water

Computer Technology

Return Flow by Sector

conveyance return flow of AW

conveyance return flow

data

Supply and Balance Work Team

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

9/11/2007

11/1/2007

A61221 Determine Return Flow to developed supply by sector

A6122

55

Determine Return Flow to

Developed Supply, same DAU, other

county 1 Determine RFTDS, same county, other

DAU 2Determine

RFTDS, same PA, other DAU/Co 3

Determine RFTDS, other

PA4

Determine RFTDS, other

Region5

Compile Return Flow to

Developed Supply 6

relational factors

Applied Water

conveyance return flow of AW

RF Same DAU, other County

RF, same county, other DAU

RF, same PA, other DAU/Co

RF, other PA

RF, other region

relational factors

data

Computer Technology

Applied Water

Supply and Balance Work Team

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

9/11/2007

11/1/2007

A61222 Determine conveyance return flow to developed supply by sector

56

Determine Conv Return

Flow to Developed

Supply, same DAU, other

county 1

A612221

Determine CRFTDS,

same county, other DAU 2

A612222 Determine CRFTDS,

same PA, other DAU/Co 3

A612223 Determine CRFTDS, other

PA4

A612224 Determine CRFTDS, other

Region5

A612225Compile

Conveyance Return Flow to

Developed Supply 6

relational factors

Computer Technology

Supply and Balance Work Team

Applied Water

conveyance return flow of AW

RF Same DAU, other County

RF, same county, other DAU

RF, same PA, other DAU/Co

RF, other PA

RF, other region

data

conveyance return flow

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

9/11/2007

11/1/2007

A612221 Determine Conv Return Flow to Developed Supply, same DAU, other county

57

Develop supply by Sector

1

Develop relational factors by

sector 2

Compile Return Flow to

Developed Supply 3

Applied Water

relational factors

Supply and Balance Work TeamComputer Technology

RF Same DAU, other County

relational factors

Applied water

Applied Waterdata

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

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Flow Diagram

9/11/2007

9/11/2007

A612222 Determine CRFTDS, same county, other DAU

58

Determine Applied Water

1

Determine relational factors for return flow 2

Compile return flow

3

Computer Technology

Supply and Balance Work Team

relational factors

Applied Water

RF, same county, other DAU

applied water

applied water

relational factors for return flow

data

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

9/11/2007

11/1/2007

A612223 Determine CRFTDS, same PA, other DAU/Co

59

Use Applied Water

1

develop relational factors for

return flows2

Compile return flows

3

Computer TechnologySupply and Balance Work Team

Applied Water

relational factors

data

RF, same PA, other DAU/Co

relational factors for return flow

Applied Water

applied water

Used At:

Author:

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Date:

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Flow Diagram

9/11/2007

11/1/2007

A612224 Determine CRFTDS, other PA

60

Use applied water by sector

1

determine relational use

factors for return flows2

compile return flows by sector

3

Supply and Balance Work Team

Computer Technology

Applied Water

relational factors

data

RF, other PA

relational factors for return flows

applied water

applied water

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

9/11/2007

9/11/2007

A612225 Determine CRFTDS, other Region

61

Use applied water by sector

1

determine relational factors for

return flow by sector 2

compile return flow

3

Supply and Balance Work Team

Computer Technology

Applied Water

data

relational factors

RF, other region

applied waterapplied water

relational factors for return flows

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

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Flow Diagram

9/12/2007

11/1/2007

A6123 Determine Reuse including return flow within service areas

A612

62

Determine reuse between sectors from outflow by

sector 1

Compute reuse by sector for use in other

sectors 2

Compute internal reuse

within sector by sector 3

Determine total reuse by sector

4

Supply and Balance Work Team Computer Technology

Deep Perc by Sector

Applied WaterActual Year Water UseAW & ETAW

Reuse by Sector

data

reuse by sectors

reuse sector to sector

Return Flow by Sector

Used At:

Author:

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Flow Diagram

9/5/2007

3/24/2010

A613 Determine Irrecoverable Water

A61

63

Develop E&ET for Ag, Urban and Wetlands

1

A6131Develop

Irrecoverable Water for

Conveyance E&ET,

incidental E&ET 2

A6132 Develop Return Flow to

Salt Sink3

Develop Outflow to Oregon, Mexico & Nevada 4

Compile Irrecoverable

Water5

Supply and Balance Work Team Computer Technology

Irrecoverable Water

net iteration

depletion iterationE&ET for AG, Urban & Wetlands

Conveyance & Incidental Irrecoverable Water

Return Flow to Salt Sink

Statewide Outflow

relational factors

Applied Water

Supply

applied iteration

Managed Wetlands Applied Water

Agricultural Applied Water

Used At:

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Date:

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CONTEXT:Tipton

Flow Diagram

9/7/2007

11/1/2007

A6131 Develop E&ET for Ag, Urban and Wetlands

A613

64

Develop ETAW for AG, M&I,

MW1

Develop evaporation for Ag, M&I, MW, GW recharge

by sector 2

A61312Develop Evap

for M&I wastewater

3

A61313

Develop E&ET for Ag

4

Computer TechnologySupply and Balance Work Team

depletion iteration

net iterationE&ET for AG, Urban & Wetlands

evaporation of wastewater

evap of Ag, M&I, MW & GW recharge

ETAW for Ag, M&I, MW

relational factors

professional judgement

Applied Water

data

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

Rev:

READER DATEWORKING

DRAFT

RECOMMENDED

PUBLICATION

Project:

Node: Title: Number:

Page:

CONTEXT:Tipton

Flow Diagram

9/10/2007

11/1/2007

A61312 Develop evaporation for Ag, M&I, MW, GW recharge by sector

A6131

65

Applied Water for GW

recharge for Ag, M&I, MW1

Determine Relational Factors

2

Compute Evaporation for Ag, M&I, MW groundwater

recharge 3

relational factors

Supply and Balance Work Team

Computer Technology

professional judgement

evap of Ag, M&I, MW & GW recharge

Applied Water

GW recharge AW

relational factors for GW recharge

GW recharge AW

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

Rev:

READER DATEWORKING

DRAFT

RECOMMENDED

PUBLICATION

Project:

Node: Title: Number:

Page:

CONTEXT:Tipton

Flow Diagram

9/10/2007

11/1/2007

A61313 Develop Evap for M&I wastewater

A6131

66

Determine Urban

Wastewater Production 1

Determine Urban

Wastewater Discharge 2

Determine Urban

Wastewater deep

percolation 3

Compute Urban

Wastewater Evaporation4

Supply and Balance Work Team Computer Technology

evaporation of wastewater

Applied Water

data

NPDES requirementsurban wastewater production

urban wastewater discharge

Urban Wastewater deep perc

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

Rev:

READER DATEWORKING

DRAFT

RECOMMENDED

PUBLICATION

Project:

Node: Title: Number:

Page:

CONTEXT:Tipton

Flow Diagram

9/10/2007

3/24/2010

A6132 Develop Irrecoverable Water for Conveyance E&ET, incidental E&ET

A613

67

Compute Conveyance

Evaporation by sector 1

A61321 Compute Irrecoverable Drainage and

Riparian Water by Sector 2

A61322Compute Ag

Misc Irrecoverable

Water by Sector 3

A61323

net iteration

depletion iteration

Computer Technology

Supply and Balance Work Team

relational factors

Supply

Conveyance & Incidental Irrecoverable Water

Irrigation evaporation

irrecoverable drainage

Compute Irrecoverable

irrigation water, conveyance evaporation and misc by

sector 5

misc ag irrecoverable water

applied iteration

Managed Wetlands Applied Water

Agricultural Applied Water

Compute Managed Wetland

Irrecoverable Water by

sector 4

A61324

misc MW irrecoverable water

Applied Water

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

Rev:

READER DATEWORKING

DRAFT

RECOMMENDED

PUBLICATION

Project:

Node: Title: Number:

Page:

CONTEXT:Tipton

Flow Diagram

9/10/2007

3/24/2010

A61321 Compute Conveyance Evaporation by sector

A6132

68

Compile developed supply by

sector 1

Determine relational factors for

conveyance evaporation by

sector 2

Compute conveyance

evaporation by sector 3

Supply and Balance Work Team Computer Technology

depletion iteration

relational factors

net iteration

Irrigation evaporation

Supply

relational factors for conv evap

developed supply by sector

data

Applied Water

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

Rev:

READER DATEWORKING

DRAFT

RECOMMENDED

PUBLICATION

Project:

Node: Title: Number:

Page:

CONTEXT:Tipton

Flow Diagram

9/10/2007

3/24/2010

A61322 Compute Irrecoverable Drainage and Riparian Water by Sector

A6132

69

Compile Applied Water

by Sector1

Determine Riparian

Irrecoverable Water

Relational Factors by

Sector 2

Compute Irrecoverable Drainage and

Riparian ET by Sector 3

Supply and Balance Work Team

Computer Technology

depletion iteration

relational factorsnet iteration

Supply

irrecoverable drainage

applied water by sector

Agricultural Applied Water

Managed Wetlands Applied Waterapplied iteration

Applied Water

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

Rev:

READER DATEWORKING

DRAFT

RECOMMENDED

PUBLICATION

Project:

Node: Title: Number:

Page:

CONTEXT:Tipton

Flow Diagram

9/11/2007

3/24/2010

A61323 Compute Ag Misc Irrecoverable Water by Sector

A6132

70

Compile Ag Applied Water

1

Determine Ag Evaporation and

Evapotranspiration Relational Factors

2

Compute Ag Misc Evap &

ET3

Supply and Balance Work TeamComputer Technology

Agricultural Applied WaterSupply

depletion iteration

relational factors

net iteration

misc ag irrecoverable water

Ag Applied Water

Ag ET Relational Factors

Ag Applied Water

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

Rev:

READER DATEWORKING

DRAFT

RECOMMENDED

PUBLICATION

Project:

Node: Title: Number:

Page:

CONTEXT:Tipton

Flow Diagram

9/11/2007

3/24/2010

A61324 Compute Managed Wetland Irrecoverable Water by sector

A6132

71

Use Managed Wetlands

Applied Water1

Determine misc MW

Evaporation & ET Relational

Factors 2

Compute Misc MW Evap & ET

3

Supply and Balance Work Team

Computer Technology

Managed Wetlands Applied Water

relational factors

net iteration

depletion iteration

misc MW irrecoverable water

MW misc irrecoverable relational factors

MW Applied Water

MW Applied Water

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

Rev:

READER DATEWORKING

DRAFT

RECOMMENDED

PUBLICATION

Project:

Node: Title: Number:

Page:

CONTEXT:Tipton

Flow Diagram

12/10/2001

12/10/2001

A62 Apply Depletion Water Balance

A6

72

Determine Total E & ET

Outflow to Salt Sink and

Outflow to Nevada, Oregon, Mexico 1

Develop Net Supply (Supply

minus Deep Percolation)

2

Develop Depletion Balance

3

Computer Technology

Supply and Balance Work Team

Depletion Water Balance

Total E&ET Outflow to Split Sink

Outflow to Mexico, Nevada, Oregon

Net Supply

Depletion Supply

Iteration of Supply Data

Iteration of Outflow Data & E&ET

depletion iteration

inflow-outflow water balance

Applied Water

Actual Year Water UseAW & ETAW

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

Rev:

READER DATEWORKING

DRAFT

RECOMMENDED

PUBLICATION

Project:

Node: Title: Number:

Page:

CONTEXT:Tipton

Flow Diagram

12/10/2001

11/1/2007

A63 Apply Net Water Balance

A6

73

Develop E&ET for AG, Urban,

Wetlands1 Develop

Irrecoverable Losses for

Conveyance E&ET,

Incidental E&ET 2

Determine Return Flow to

Developed System - AG,

Urban, & Wetland, R.F. to Salt Sink, &

Outflow to Nevada, Mexico, Oregon 3

Develop Water Supply (Supply

minus Deep Percolation)

4Balance Net Water Use

5

Computer TechnologySupply and Balance Work Team

Net Water Balance

Water Supply - Deep Perc

Return Flows

Irrecoverable Losses

E & ET

Iteration/Water Supply

Iteration/Return Flows

Iteration/ Irrecoverable Losses

Iteration/E&ET

net iteration

inflow-outflow water balance

Applied Water

Actual Year Water UseAW & ETAW

Used At:

Author:

Notes: 1 2 3 4 5 6 7 8 9 10

Date:

Rev:

READER DATEWORKING

DRAFT

RECOMMENDED

PUBLICATION

Project:

Node: Title: Number:

Page:

CONTEXT:Tipton

Flow Diagram

12/10/2001

3/24/2010

A64 Apply Applied Water Balance

A6

74

Develop Ag, Urban, and Environmental Applied Water and

Conveyance Irrecoverable Water

1 Determine Reuse, incl. Return Flow

within Service Area, Deep Percolation2

Develop Supply

3

Develop Applied Water

Balance4

Supply and Balance Work TeamComputer Technology

Applied Water Balance

Urban, Ag & Env Applied Water & Conveyance Losses

Reuse

Water Supply

Iteration/Water Supply

Iteration/Reuse

Iteration/Applied Water and Conveyance Losses

inflow-outflow water balance

applied iteration

Applied Water

Actual Year Water UseAW & ETAW

\\rio\share\Portfolio\Update_2009\Update_2009_IDEF0\flow diagram(3-24-2010).igx

+ Run Setup

+ Generators

+ Resources

+ Calendars

+ Initialization

+ Functions

+ Monitors

\\rio\share\Portfolio\Update_2009\Update_2009_IDEF0\flow diagram(3-24-2010).igx

Elapsed Time

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