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1

Paksoy, Halime Ö., ed. Thermal Energy Storage for Sustainable Energy Consumption. Dordrecht: Springer Netherlands, 2007. http://dx.doi.org/10.1007/978-1-4020-5290-3.

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2

Dalal, G. G. Eco-friendly technology for thermal power plants. New Delhi: Central Borad of Irrigation and Power, 2002.

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3

Ö, Paksoy Halime, and NATO Public Diplomacy Division, eds. Thermal energy storage for sustainable energy consumption: Fundamentals, case studies and design. Dordrecht: Springer, 2007.

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4

Szargut, Jan. Exergy analysis of thermal, chemical, and metallurgical processes. New York: Hemisphere, 1988.

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5

Rainery, Richard. Alaska's public energy resources: Distribution of benefits of thermal energy and electric power energy resource consumption. [Juneau?]: Rural Research Agency, Alaska State Senate, 1985.

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6

Westphalen, Detlef. Energy consumption characteristics of commercial building HVAC systems: Thermal distribution, auxiliary equipment, and ventilation. Cambridge, MA: Arthur D. Little, Inc., 1999.

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7

Baylon, David. Baseline characteristics of the non-residential sector: Idaho, Montana, Oregon and Washington. Portland, Or: The Alliance, 2001.

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8

Palmiter, Larry S. Development of a simple device for field air flow measurement of residential air handling equipment: Phase II. Seattle, WA: Ecotope, 2000.

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9

Palmiter, Larry S. Field performance of two air-to-air heat exchangers in Montana: Final report. Seattle, WA: Ecotope, 1987.

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10

Baylon, David. Baseline characteristics of the residential sector in Idaho, Montana, Oregon and Washington: For the Northwest Energy Efficiency Alliance. Seattle, WA: Ecotope, 2000.

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11

Baylon, David. Baseline characteristics of the residential sector: Idaho, Montana, Oregon and Washington. Portland, Or: The Alliance, 2001.

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12

Center, NAHB Research. Enerjoy case study: An evaluation of thermal comfort and energy consumption for the Energyjoy radiant panel heating system. Upper Marlboro, MD: NAHB Research Center, 1994.

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13

Palmiter, Larry S. SUNDAY calibration: Informal progress report. Seattle, WA: Ecotope, 1998.

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14

Hwang, Yunho. Testing of refrigerant mixtures in residential heat pumps. Washington, D.C: The Office, 1995.

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15

Meier, Alan. An analysis of outliers in the RSDP. Berkeley, Calif: Applied Science Division, Lawrence Berkeley Laboratory, University of California, 1988.

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16

Oxlade, Chris. Heating. Chicago, Ill: Heinemann Library, 2013.

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17

Szargut, Jan, David R. Morris, and Frank R. Steward. Exergy Analysis of Thermal, Chemical, and Metallurgical Processes. Springer, 1988.

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18

Martin, A., J. Sands, and A. Seaman. Hvac Thermal Storage: Practical Application and Performance Issues. BSRIA, 2000.

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19

Galvin, Ray, and Minna Sunikka-Blank. A Critical Appraisal of Germany's Thermal Retrofit Policy: Turning Down the Heat. Springer, 2016.

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20

William, Prindle, Howard Bion D, and American Council for an Energy-Efficient Economy., eds. Impact assessment of 2004 IECC wall criteria changes. Washington, D.C: ACEEE, 2005.

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21

A Critical Appraisal Of Germanys Thermal Retrofit Policy Turning Down The Heat. Springer London Ltd, 2013.

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22

Paksoy, Halime Ö. Thermal Energy Storage for Sustainable Energy Consumption: Fundamentals, Case Studies and Design (NATO Science Series II: Mathematics, Physics and Chemistry). Springer, 2007.

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23

Paksoy, Halime Ö. Thermal Energy Storage for Sustainable Energy Consumption: Fundamentals, Case Studies and Design (NATO Science Series II: Mathematics, Physics and Chemistry). Springer, 2007.

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24

David, Baylon, Northwest Energy Efficiency Alliance, and Ecotope Group, eds. Baseline characteristics of the multi-family sector: Oregon and Washington. Portland, Or: The Alliance, 2001.

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25

Ed, Early, University of Washington, and Washington State Energy Office, eds. Dynamic response of building components in residential homes: Final simulation report. [Seattle, WA?]: University of Washington, 1989.

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26

David, Baylon, Northwest Energy Efficiency Alliance, and Ecotope Group, eds. Baseline characteristics of the multi-family sectors, Oregon and Washington. Seattle, WA: Ecotope, 2000.

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27

Architecture and Systems Ecology: Thermodynamic Principles of Environmental Building Design, in Three Parts. Taylor & Francis Group, 2015.

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28

Architecture and Systems Ecology: Thermodynamic Principles of Environmental Building Design, in three parts. Routledge, 2015.

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29

Circulation Pump Power for Solar Water Heater. academia.edu, 2017.

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