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1

Farid, Mohammed, Amar Auckaili, and Gohar Gholamibozanjani. Thermal Energy Storage with Phase Change Materials. CRC Press, 2021. http://dx.doi.org/10.1201/9780367567699.

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2

Fleischer, Amy S. Thermal Energy Storage Using Phase Change Materials. Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-20922-7.

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3

Delgado, João M. P. Q., Joana C. Martinho, Ana Vaz Sá, Ana S. Guimarães, and Vitor Abrantes. Thermal Energy Storage with Phase Change Materials. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-319-97499-6.

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4

B, Ibrahim Mounir, and United States. National Aeronautics and Space Administration., eds. Analysis of thermal energy storage material with change-of-phase volumetric effects. National Aeronautics and Space Administration, 1990.

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5

Ali, Hafiz Muhammad. Phase Change Materials for Thermal Energy Management and Storage. CRC Press, 2024. http://dx.doi.org/10.1201/9781003331957.

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6

Frazzica, Andrea, and Luisa F. Cabeza, eds. Recent Advancements in Materials and Systems for Thermal Energy Storage. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-319-96640-3.

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7

National Renewable Energy Laboratory (U.S.) and SolarPACES (Conference) (2011 : Granada, Spain), eds. High temperature phase change materials for thermal energy storage applications: Preprint. National Renewable Energy Laboratory, 2011.

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8

Mounir, Ibrahim, and United States. National Aeronautics and Space Administration., eds. Experimental and computational investigations of phase change thermal energy storage canisters. National Aeronautics and Space Administration, 1996.

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9

E, Coles-Hamilton Carolyn, Juhasz Albert J, and United States. National Aeronautics and Space Administration., eds. Selection of high temperature thermal energy storage materials for advanced solar dynamic space power systems. National Aeronautics and Space Administration, 1987.

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10

Glatzmaier, Greg C. Summary report for Concentrating Solar Power Thermal Storage Workshop: New concepts and materials for thermal energy storage and heat-transfer fluids, May 20, 2011. National Renewable Energy Laboratory, 2011.

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11

Daniel, Whittenberger J., and United States. National Aeronautics and Space Administration., eds. Fluoride salts and container materials for thermal energy storage applications in the temperature range 973 to 1400 K. National Aeronautics and Space Administration, 1987.

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12

David, Namkoong, Darling Douglas, and United States. National Aeronautics and Space Administration., eds. Scaling analysis applied to the NORVEX code development and thermal energy flight experiment. National Aeronautics and Space Administration, 1991.

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13

Forum on New Materials (5th 2010 Montecatini Terme, Italy). New materials II: Thermal-to-electrical energy conversion, photovoltaic solar energy conversion and concentrating solar technologies : proceedings of the 5th Forum on New Materials, part of CIMTEC 2010, 12th International Ceramics Congress and 5th Forum on New Materials, Montecatini Terme, Italy, June 13-18, 2010. Trans Tech Publications, 2011.

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14

Ding, Yulong, ed. Thermal Energy Storage. Royal Society of Chemistry, 2021. http://dx.doi.org/10.1039/9781788019842.

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15

Ali, Hafiz Muhammad, Furqan Jamil, and Hamza Babar. Thermal Energy Storage. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-1131-5.

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16

Canada, Energy Mines and Resources Canada. Thermal storage. Energy, Mines and Resources Canada, 1985.

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17

Canada. Energy, Mines and Resources Canada. Thermal storage. Energy, Mines and Resources Canada, 1985.

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18

Garg, H. P., S. C. Mullick, and A. K. Bhargava. Solar Thermal Energy Storage. Springer Netherlands, 1985. http://dx.doi.org/10.1007/978-94-009-5301-7.

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19

Lee, Kun Sang. Underground Thermal Energy Storage. Springer London, 2013. http://dx.doi.org/10.1007/978-1-4471-4273-7.

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20

Garg, H. P. Solar Thermal Energy Storage. Springer Netherlands, 1985.

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21

Lee, Kun Sang. Underground Thermal Energy Storage. Springer London, 2013.

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22

C, Mullick S., and Bhargava A. K, eds. Solar thermal energy storage. D. Reidel, 1985.

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23

Mobedi, Moghtada, Kamel Hooman, and Wen-Quan Tao. Solid–Liquid Thermal Energy Storage. CRC Press, 2022. http://dx.doi.org/10.1201/9781003213260.

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24

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

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25

Dinter, Frank, Michael A. Geyer, and Rainer Tamme, eds. Thermal Energy Storage for Commercial Applications. Springer Berlin Heidelberg, 1991. http://dx.doi.org/10.1007/978-3-642-48685-2.

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26

United States. National Aeronautics and Space Administration., ed. Flight experiment of thermal energy storage. National Aeronautics and Space Administration, 1989.

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27

Rosen, Marc (Marc A.), ed. Thermal energy storage: Systems and applications. 2nd ed. Wiley, 2010.

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28

S, Elleson James, and American Society of Heating, Refrigerating and Air-Conditioning Engineers., eds. Design guide for cool thermal storage. American Society of Heating, Refrigerating and Air-Conditioning Engineers, 1994.

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29

Okamura, Akihiko. Guide of thermal storage technology. Ohmsha, 2009.

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30

Okamura, Akihiko. Guide of thermal storage technology. Ohmsha, 2009.

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31

United States. National Aeronautics and Space Administration., ed. Analysis of lunar regolith thermal energy storage. National Aeronautics and Space Administration, 1991.

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32

Thermal Energy Storage with Phase Change Materials. Taylor & Francis Group, 2021.

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33

Thermal Energy Storage with Phase Change Materials. Taylor & Francis Group, 2023.

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34

Farid, Mohammed, Amar Auckaili, and Gohar Gholamibozanjani. Thermal Energy Storage with Phase Change Materials. Taylor & Francis Group, 2021.

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35

Farid, Mohammed, Amar Auckaili, and Gohar Gholamibozanjani. Thermal Energy Storage with Phase Change Materials. Taylor & Francis Group, 2021.

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36

Farid, Mohammed M., Amar M. Auckaili, and Gohar Gholambozanjani. Thermal Energy Storage with Phase Change Materials. Taylor & Francis Group, 2021.

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37

Ding, Yulong, and Luisa Cabeza. Thermal Energy Storage: Materials, Devices, Systems and Applications. Royal Society of Chemistry, The, 2020.

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38

Ding, Yulong, and Luisa Cabeza. Thermal Energy Storage: Materials, Devices, Systems and Applications. Royal Society of Chemistry, The, 2020.

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39

Thermal Energy Storage: Materials, Devices, Systems and Applications. Royal Society of Chemistry, The, 2020.

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40

Jamil, Furqan, Hamza Babar, and Hafiz Muhammad Ali. Thermal Energy Storage: Storage Techniques, Advanced Materials, Thermophysical Properties and Applications. Springer Singapore Pte. Limited, 2021.

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41

Thermal Energy Storage: Storage Techniques, Advanced Materials, Thermophysical Properties and Applications. Springer, 2022.

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42

Fleischer, Amy S. Thermal Energy Storage Using Phase Change Materials: Fundamentals and Applications. Springer, 2015.

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43

Fleischer, Amy S. Thermal Energy Storage Using Phase Change Materials: Fundamentals and Applications. Springer London, Limited, 2015.

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44

Latent Heat-Based Thermal Energy Storage Systems: Materials, Applications, and the Energy Market. Taylor & Francis Group, 2020.

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45

Sharma, Atul, Amritanshu Shukla, and Pascal Henry Biwolé. Latent Heat-Based Thermal Energy Storage Systems: Materials, Applications, and the Energy Market. Apple Academic Press, Incorporated, 2020.

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46

Sharma, Atul, Amritanshu Shukla, and Pascal Henry Biwolé. Latent Heat-Based Thermal Energy Storage Systems: Materials, Applications, and the Energy Market. Apple Academic Press, Incorporated, 2020.

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47

Sharma, Atul, Amritanshu Shukla, and Pascal Henry Biwolé. Latent Heat-Based Thermal Energy Storage Systems: Materials, Applications, and the Energy Market. Apple Academic Press, Incorporated, 2020.

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48

Sharma, Atul, Amritanshu Shukla, and Pascal Henry Biwolé. Latent Heat-Based Thermal Energy Storage Systems: Materials, Applications, and the Energy Market. Apple Academic Press, Incorporated, 2022.

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49

Sharma, Atul, Amritanshu Shukla, and Pascal Henry Biwolé. Latent Heat-Based Thermal Energy Storage Systems: Materials, Applications, and the Energy Market. Apple Academic Press, Incorporated, 2020.

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50

Cabeza, Luisa F., and Andrea Frazzica. Recent Advancements in Materials and Systems for Thermal Energy Storage: An Introduction to Experimental Characterization Methods. Springer, 2018.

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