Download - Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

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Page 1: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Objective

• Address your concerns/suggestions• Review

• Learn about Cooling Systems • Compressor cooling circles

• Sorption coiling

• Evaporative cooling

Page 2: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Vapor Compression Cycle

Expansion valve

Outdoor 105°FIndoor 75°F

Page 3: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Thermodynamics - review

Page 4: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Thermodynamics - review

Page 5: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Thermodynamics - review

• Enthalpy: h [J/kg, Btu/lb]• Temperature change ΔT

Δh = cp ΔT – only for the same phase (air, water)

What if we have change of the phase -evaporation or condensation?

• Entropy: s [J/kgK, Btu/lb°F] Δh = T Δs for evaporation or condensation

Page 6: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

What is the COP?

A. Congressional Observer Publications

B. California Offset Printers, Inc

C. Coefficient of Performance

D. Slang for a policeman

Page 7: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

COPCoefficient of Performance

[W]energy electric Used

[W]energy cooling ProvidedCOP

Page 8: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Refrigeration Cycle

Page 9: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Components of a DX system

• Compressor

• Evaporator

• Condenser

• Expansion valve

Page 10: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

92 °F

56 °F69 psig

DB = 77 °FWB = 64 °F

orificecapillary tube

TXV

110 °F~200 psig

DB = 60 °FWB = 53 °F

High pressure, high boiling/condensing point

Low pressure, low boiling point

DX Cooling Machine

Page 11: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Air Cooled Chiller

Outside air 95°F

Inside 75°FWater 42°F

BuildingWater 52°F

Chiller

Page 12: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Water Cooled Chiller

Outside air 95°F

Inside 75°FWater 42°F

BuildingWater 52°FWater 120°F

Water 100°F

Cooling tower

Chiller

Page 13: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Cooling

Evaporative cooling Compressor Cooling Sorption cooling

DX machine Chiller

Air CooledCondenser

Water CooledCondenser

Convert Cooling machine (DX machine) to heat pumps

Evaporative Chiller

Page 14: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Air cooled condenser

• Only for small capacity

• Cool the water or directly the refrigerant for compressor chillers

Page 15: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Cooling tower

• Provide cooling water for condenser or absorption

Type

Location Legionella

Page 16: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Evaporative Cooling

• Wet media/water spray – direct• Raise absolute humidity, lowers temperature of

conditioned air

• Cooling tower – indirect• Cools through a heat exchanger• Lowers temperature, does not affect absolute

humidity• Can directly cool air in cold weather

Page 17: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Evaporative Cooling

Page 18: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

What is Heat Pump ?

Cooling Heating

Outside 95°F Outside 55°F

Inside 75°FInside 75°F

Page 19: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

www.srpnet.com/energy/pumpworks.aspx

1) Compressor

2) Condenser

3) Evaporator

4) Air handler

5) Reversing valve

and expansion valve

Page 20: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

COP for heat pump

energy electric Used

energy electric Usedcondenser on Cooling HeatingCOP

[W]energy electric Used

[W]energy heatin ProvidedHeatingCOP

energy electric Usedcondenser on Cooling energy heatin Provided

energy electric Used

energy electric Used

energy electric Used

condenser on Cooling HeatingCOP

1 CoolingHeating CPOCOP

Page 21: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Energy Storage Systems

Page 22: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Daily distribution of cooling load

Page 23: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Thermal Storage

• Make ice/chilled water at times of low demand or low energy prices

• Store water in insulated container

• Can be used to reduce overall demand

• Water can be used as secondary water source for fire protection

• Ice/snow

Page 24: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Thermal Storage

Page 25: Objective Address your concerns/suggestions Review Learn about Cooling Systems Compressor cooling circles Sorption coiling Evaporative cooling.

Reading Assignment

Tao and Janis Chapter 4