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AUCKLAND SOLAR HOME AND TRANSPORT Building Design House Design

Auckland Solar Home AND TRANSPORT

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Auckland Solar Home AND TRANSPORT. Building Design House Design. Content outline. Why use solar energy and where is the money What is solar cooling: liquid desiccant dehumidification History, modern technology and design for NZ Principle Design Operation People - PowerPoint PPT Presentation

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Page 1: Auckland Solar Home AND TRANSPORT

AUCKLAND SOLARHOME AND TRANSPORT

Building Design

House Design

Page 2: Auckland Solar Home AND TRANSPORT

CONTENT OUTLINEWhy use solar energy and where is the money

What is solar cooling: liquid desiccant dehumidification

History, modern technology and design for NZ

Principle

Design

Operation

People

Solar home and solar transport photos album

Page 3: Auckland Solar Home AND TRANSPORT

WHY USE SOLAR ENERGY

Free Power

Free Heating

Free Cooling

Free Hot Water

Page 4: Auckland Solar Home AND TRANSPORT

SOLAR AIR CONDITIONING

ENGINEE

RSCIE

NTIST

SOLAR

ELECTRICI

TY

Page 5: Auckland Solar Home AND TRANSPORT

WHERE IS THE MONEY

Simple calculation by using times, division, addition and minus

Plan A: NZ Home, 1.5 billion dollars saving every year use solar

Plan B: Auckland Bicycle, 1 billion dollars patrol saving every year

Plan C: Non Driver Bus, 1 billion dollars wages saving every year

Plan D: NZ Bus, 250 million dollars saving every year

Total saving: $3.75 billion every year

I can save more than this money!

Page 6: Auckland Solar Home AND TRANSPORT

BUILDING ENERGY COST

Building energy cost1st Air Conditioning: 50%2nd Hot water: 20%3rd Lighting: 10%4rd Appliance: 10%4th Other: 10%

Saving cost, Saving money

Page 7: Auckland Solar Home AND TRANSPORT

TRANSPORT FUEL COST

4,300,000 population, 3,087,400 vehicle

Every vehicle cost patrol $10 dollars per week assumption

$1.6 billion dollars on the patrol every year

Page 8: Auckland Solar Home AND TRANSPORT

PLAN A: 1.5 BILLION DOLLARS EVERY YEAR

NZ: 4,300,000 people, 1,000,000 home

$20 per month hot water shower bill per person

Total cost: $20 ×4,300,000×12=$1,032,000,000 every year

LED bulb: 50W bulb can be changed to 3W LED Bulb

Total saving: 50 × 3×1,000,000 ×4×365×$0.2/1000 × ( 1 + 10)

= $482 million

This can be saved by using free solar energy: 1.032+0.482 = 1.514 billion

Page 9: Auckland Solar Home AND TRANSPORT

PLAN B:1 BILLION DOLLARS EVERY YEAR

$1.6 billion dollars patrol can be saved to $1 billion dollars

Danmark: 5,000,000 people, 4,000,000 million bicycles

Auckland: 1,400,000n people, 1,000,000 bicycles

20 dollars patrol saving by using bicycle every week

1,000,000×20 ×52 = $1 billion dollars every year can be saved

There is no congestion in NZ

People will more healthy by exercise and clean air

Page 10: Auckland Solar Home AND TRANSPORT

PLAN C: 1 BILLION DOLLARS EVERY YEAR

50 millions NZBUS movement every year

1 hour every movement assumption

20 dollars per hour average wages

50 ×20= $1 billions dollars wages every year

It can be saved by using non driver buses

Page 11: Auckland Solar Home AND TRANSPORT

PLAN D: 250 MILLION DOLLARS EVERY YEAR

10 bus running: 9 bus empty

50 millions NZBUS movement every year

4 liters diesel per movement assumption

1.5 dollars per liter diesel

50 ×4 ×1.5 = $300 millions dollars fuel every year

Small bus plus Energy saving bus only use $50 millions dollars fuel every year

$300 - $50 = $250 millions dollars can be saved every year

Page 12: Auckland Solar Home AND TRANSPORT

FUTURE HOME

No power bill

No water bill

No car fuel bill

Sunny room

Bicycle

Page 13: Auckland Solar Home AND TRANSPORT

BUILDING DESIGN

Solar Air Conditioning System

Solar Hot Water System

Solar Power LED Lighting

Solar Power Home Appliance

Solar Power Recharged Bicycle

Sunny Balcony

Page 14: Auckland Solar Home AND TRANSPORT

HOUSE DESIGN

Solar Air Conditioning

Solar Hot Water

Solar Power LED lighting

Solar Power Home Appliance

Solar Power Recharge Vehicle

Sunny Room

Page 15: Auckland Solar Home AND TRANSPORT

FUTURE TRANSPORT

Small size bus

Electrical Vehicle

Electrical Bicycle

Recharge Car Station

Recharge Bus Station

Recharge at home by solar power

Page 16: Auckland Solar Home AND TRANSPORT

AUCKLAND UNITARY PLAN

Solar show house in Onehunga

Solar show building in Newmarket: the University of Auckland

LED show walk way in Ponsonby Park

Single route show bicycle way with solar recharge station from Onehunga to Newmarket

Small bus running show route: Dominion road

Page 17: Auckland Solar Home AND TRANSPORT

AUCKLAND UNITARY PLAN

CBD to Airport train ? No, CBD to Airport non driver bus plan and bicycle bridge plan and non-driver bus plan !

Beautiful way (visionibility, Three-dimensional transport)

Economic way (cheap and quality design)

People first choice (safe, fast, healthy, anti-rain, non-congestion, environment friendly, non fuel cost)

Don’t damage the property (bridge along the current road)

Page 18: Auckland Solar Home AND TRANSPORT

AIR CONDITIONING

Humidity Control

• Cost more energy

Temperature

Control• Cost less

energy

Page 19: Auckland Solar Home AND TRANSPORT

SOLAR COOLING

Humidity Control

• Liquid Desiccant

Temperature

Control• Solar Power

Page 20: Auckland Solar Home AND TRANSPORT

LIQUID DESICCANT ADVANTAGES

Smaller air pressure drop: Cheap running fee

Pump: Suit large building

Tank: Suit solar energy

Page 21: Auckland Solar Home AND TRANSPORT

LIQUID DESICCANT HISTORY

Liquid desiccant dehumidification technology has been commercially available since 1935.

The latest commercial liquid desiccant dehumidifiers are supplied by Niagara Blower Company (Kathabar dehumidification systems), DuCool company (DuTreat, DuHandling, DuHybrid Series), L-DCS Technology Pte Ltd (200kW dehumidifier).

Most of these systems use LiCl as liquid desiccant. Kathabar

Kalsorb system use CaCl2 as liquid desiccant.

Page 23: Auckland Solar Home AND TRANSPORT

USA KATHABAR PRODUCT

Page 24: Auckland Solar Home AND TRANSPORT

GLOBAL DUCOOL PRODUCT

Ducool product delivers energy savings of 30 to 80 percent in commercial and industrial applications

India, China, Taiwan, Israel, Singapore, Latin America

Company name as Advantix Systems: a global leader in humidity and climate control

Page 25: Auckland Solar Home AND TRANSPORT

GLOBAL DUCOOL PRODUCT

Page 26: Auckland Solar Home AND TRANSPORT

GLOBAL DUCOOL PRODUCT

AHR EXPO: Innovation award winner

Page 27: Auckland Solar Home AND TRANSPORT

AHR EXPO: INNOVATION AWARD WINNER

Page 28: Auckland Solar Home AND TRANSPORT

GERMANY L-DCS PRODUCT

Page 29: Auckland Solar Home AND TRANSPORT

GERMANY L-DCS PRODUCT

Page 30: Auckland Solar Home AND TRANSPORT

DESIGN FOR NZ

Lord of the Ring

Volcanic peaks, rolling pastures, lush forests and icy glaciers

Milford Sound is one of New Zealand’s most popular tourist destinations and also long considered the country’s officially wettest location.

However, portions of the western Fiordland and Westland of the Southern Alps are estimated to be the wettest on earth.

Page 31: Auckland Solar Home AND TRANSPORT

HU MID NZ

Page 32: Auckland Solar Home AND TRANSPORT

HOUSE DESING FOR NZ

Page 33: Auckland Solar Home AND TRANSPORT

HOME IMPROVEMENT

Page 34: Auckland Solar Home AND TRANSPORT

CONVENTIONAL VCS

Challenge to the tradition, that’s the secret to be the leader

Conventional vapour compression air conditioning systems (VCS) cool the air below its dew point to condensate the water vapour in the air, followed by reheating of the air to a comfortable temperature.

Liquid desiccant cooling system: The pre-cooled desiccant system can not only dehumidify plant air, but also can cool the plant air

Page 35: Auckland Solar Home AND TRANSPORT

PRINCIPLE

Page 36: Auckland Solar Home AND TRANSPORT

DUCOOL WEBSITE

Page 37: Auckland Solar Home AND TRANSPORT

STRUCTURE

Page 38: Auckland Solar Home AND TRANSPORT

DESICCANT SOLUTION

LiCl, TEG and CaCl2

Lithium chloride: expensive, stable, regeneration at 80 ºC, corrosive, high performance dehumidification, plastic storage

Calcium chloride solution: cheap, unstable, cheap storage, regeneration at 60 ºC, corrosive, plastic storage

TEG: earliest, evaporate, regeneration at 65 ºC to 80 ºC

Mixture of LiCl and CaCl2: higher performance

Page 39: Auckland Solar Home AND TRANSPORT

DRIVING FORCE

vapour pressure difference between the gaseous air and the liquid desiccant

When the air vapour pressure is higher than the liquid vapour pressure, dehumidification takes place

When the air vapour pressure is lower than the liquid vapour pressure, regeneration occurs.

The capacity of the water vapour removal rate can be determined by the vapour pressure of the liquid desiccant

Page 40: Auckland Solar Home AND TRANSPORT

COUPLED HEAT AND MASS TRANSFER

Mass transfer and heat transfer

The heat transfer process involves the temperature difference and absorption heat released

condensation of vapour and the heat of mixing

The heat from the air and absorption raises the solution vapour pressure. This reduces the capability of the desiccant to absorb more vapour

As heat is transferred away from the surface, the liquid desiccant becomes capable of absorbing additional vapour

Page 41: Auckland Solar Home AND TRANSPORT

STRUCTURED PACKING BED

Cooling tower

Evaporative cooler

Dehumidifier

Regenerator

Page 42: Auckland Solar Home AND TRANSPORT

DEHUMIDIFER

Page 43: Auckland Solar Home AND TRANSPORT

COUNTER FLOW WITH INTERNAL COOLING

Page 44: Auckland Solar Home AND TRANSPORT

SPRAY NOZZLE

Page 45: Auckland Solar Home AND TRANSPORT

CARRYOVER

Page 46: Auckland Solar Home AND TRANSPORT

OPERATION

liquid to air mass flow mass rate ratios: optimum L/G

Maximum wetting of the packing and ensure the desiccant temperature does not increase significantly

Uniformly distributed

Fan size and pump size

Regeneration temperature

Page 47: Auckland Solar Home AND TRANSPORT

OPERATION

Energy storage: solar energy battery

Concentrated desiccant can be stored in uninsulated plastic tanks with no loss in cooling potential over time

match cooling loads with the availability of solar energy

The concentrated salt solution can also be transported over long distances without losing any of its air dehumidification ability

solar panels produce three times more energy than required for air dehumidification on clear days

Page 48: Auckland Solar Home AND TRANSPORT

OPERATION

Pressure drop knowledge

Pump and fan size

The optimal analysis is to attempt to decrease the pressure drop and improve the heat and mass transfer performances while minimizing the initial cost e.g. packing volume

Page 49: Auckland Solar Home AND TRANSPORT

THE AUCKLAND OF UNIVERSITY: LAB

Thermodynamic Lab

Aerodynamic Lab

Page 50: Auckland Solar Home AND TRANSPORT

EXPERIMENT RESULT

Page 51: Auckland Solar Home AND TRANSPORT

EXPERIMENT RESULT

Page 52: Auckland Solar Home AND TRANSPORT

EXPERIMENT RESULT

Page 53: Auckland Solar Home AND TRANSPORT

EXPERIMENT RESULT

Page 54: Auckland Solar Home AND TRANSPORT

AUCKLAND UNIVERSITY: PROFESSOR

Pradeep Bansal:

Building Equipment Program, Oak Ridge National Laboratory

Chairman of ASHRAE TC 10.4 ,TC 8.9

(American Society of Heating, Refrigerating and Air-Conditioning Engineers, Technical Committee)

Richard Flay:

Building wind engineering expert

Sustainable energy expert

Page 55: Auckland Solar Home AND TRANSPORT

FIRST CLASS HONOURS MASTER DEGREE 2013

Page 56: Auckland Solar Home AND TRANSPORT

MAYOR SUPPORT

Ensure to be aware by Mayor Brown

Auckland Transport Consideration

Page 57: Auckland Solar Home AND TRANSPORT

INTERNATIONAL SUPPLY CHAIN EDUCATION ALLIANCE

Alta VosISCEA Certified Critical Chain Project Manager (IC3PM) Program Instructor

Associate at TOC3

Director at Fundi Resources Limited

Business Advisor R&D at Auckland Tourism Events & Economic Development

Innovation Manager at Enterprising Manukau

Manager at Omega Video Services CC

Page 58: Auckland Solar Home AND TRANSPORT

WHO WILL BE INVITED

Auckland Council (Mike)

Auckland Transport (Vaughn)

Temperzone (Les)

Fish & Paykel Appliance ( Chris)

URS (Cathy)

Page 59: Auckland Solar Home AND TRANSPORT

WHO WILL DESIGNBeyou International Limited

Mechanical Associate Professor, First Class Honours Master Degree of The University of Auckloand

NZ government registered Licensed Building Practitioners (check online at NZ government website: 6500 persons in Auckland)

Chief Electrical Engineer of the Largest Chinese Electrical Group company with 18 leading Manufacturer : http://www.xd.com.cn/structure/eng/members.htmStructural Engineering Chinese Chartered Professional Engineer: Check online at the China government website (28,627 persons in the 1.3 billion people country)

Page 60: Auckland Solar Home AND TRANSPORT

BICYCLE LIGHT RAIL

Page 61: Auckland Solar Home AND TRANSPORT

BICYCLE LIGHT RAIL

Page 62: Auckland Solar Home AND TRANSPORT

SMALL BUS CONCEPT 10 SEATS

Page 63: Auckland Solar Home AND TRANSPORT

MEDIUM BUS CONCEPT (20 SEATS)

Page 64: Auckland Solar Home AND TRANSPORT

LARGE BUS CONCEPT(30 SEATS)

Page 65: Auckland Solar Home AND TRANSPORT

EXTRA LARGE BUS (50 SEATS)

Page 66: Auckland Solar Home AND TRANSPORT

SOLAR WIND BUILDING

Page 67: Auckland Solar Home AND TRANSPORT

SOLAR WIND BUILDING

Page 68: Auckland Solar Home AND TRANSPORT

SOLAR BUILDING

Page 69: Auckland Solar Home AND TRANSPORT

SOLAR BUILDING

Page 70: Auckland Solar Home AND TRANSPORT

SOLAR BUILDING

Page 71: Auckland Solar Home AND TRANSPORT

SOLAR HOUSE

Page 72: Auckland Solar Home AND TRANSPORT

SOLAR HOUSE

Page 73: Auckland Solar Home AND TRANSPORT

SOLAR CAR

Page 74: Auckland Solar Home AND TRANSPORT

SOLAR CAR

Page 75: Auckland Solar Home AND TRANSPORT

SOLAR CAR

Page 76: Auckland Solar Home AND TRANSPORT

SOLAR CAR

Page 77: Auckland Solar Home AND TRANSPORT

SOLAR BICYCLE

Page 78: Auckland Solar Home AND TRANSPORT

SOLAR BICYCLE

Page 79: Auckland Solar Home AND TRANSPORT

SOLAR BUS STOP

Page 80: Auckland Solar Home AND TRANSPORT

SOLAR BUS STOP

Page 81: Auckland Solar Home AND TRANSPORT

SOLAR BUS STOP

Page 82: Auckland Solar Home AND TRANSPORT

SOLAR BICYCLE STOP

Page 83: Auckland Solar Home AND TRANSPORT

SOLAR BICYCLE STOP

Page 84: Auckland Solar Home AND TRANSPORT

SOLAR CAR STATION

Page 85: Auckland Solar Home AND TRANSPORT

SOLAR CAR STATION

Page 86: Auckland Solar Home AND TRANSPORT

SOLAR CAR STATION

Page 87: Auckland Solar Home AND TRANSPORT

NO DRIVER BUS

Page 88: Auckland Solar Home AND TRANSPORT

NO DRIVER BUS

Page 89: Auckland Solar Home AND TRANSPORT

AIRPORT ELECTRIC BICYCLE

Page 90: Auckland Solar Home AND TRANSPORT

BICYCLE BUS

Page 91: Auckland Solar Home AND TRANSPORT

SHOPPING BICYCLE