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Comprehensive Review of Thermal Energy Storage

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Comprehensive Review of Thermal Energy Storage ( comprehensive-review-thermal-energy-storage )

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Sustainability 2018, 10, 191 Sustainability 2018, 10, 191 Sustainability 2018, 10, 191 16 of 32 16 of 32 16 of 32 Figure 8. Direct contact TES system [52]. Organic PCMs can be encapsulated physic-mechanically, chemically, and physic-chemically. Various approaches to prepare the encapsulated PCM (organic) as a new kind of TES medium have Figure 8. Direct contact TES system [52]. Figure 8. Direct contact TES system [52]. been extensively developed and can be manufactured to suit the desired properties [54]. Organic PCMs can be encapsulated physic-mechanically, chemically, and physic-chemically. 4.2. PCMs Used for Energy Storage in Buildings 4.2. PCMs Used for Energy Storage in Buildings Various approaches to prepare the encapsulated PCM (organic) as a new kind of TES medium have been extensively developed and can be manufactured to suit the desired properties [54]. PCMs are considered to be potential energy saving materials since, due to latent heat absorption, PCMs are considered to be potential energy saving materials since, due to latent heat they can substantially increase the thermal mass of buildings compared to conventional building absorption, they can substantially increase the thermal mass of buildings compared to conventional 4.2. PCMs Used for Energy Storage in Buildings materials presented in Figure 9 [55]. building materials presented in Figure 9 [55]. PCMs are considered to be potential energy saving materials since, due to latent heat absorption, they can substantially increase the thermal mass of buildings compared to conventional building materials presented in Figure 9 [55]. Figure 9. The maximum energy storage capacity of different 10-mm-thick building materials Figure 9. The maximum energy storage capacity of different 10-mm-thick building materials operating operating between ◦18 and 26 °C for 24 h [55]. between 18 and 26 C for 24 h [55]. Storage concepts applied to the building sector have been classified as active or passive Figure 9. The maximum energy storage capacity of different 10-mm-thick building materials Storage concepts applied to the building sector have been classified as active or passive systems. systems. Passive thermal energy systems can effectively enhance the naturally available heat energy operating between 18 and 26 °C for 24 h [55]. Passive thermal energy systems can effectively enhance the naturally available heat energy sources in sources in order to maintain the comfort conditions in buildings and minimize the use of order to maintain the comfort conditions in buildings and minimize the use of mechanically assisted mechSatnoircaaglelycaosnsicsetpedtshaepatpinligedortocoothliengbsuyilsdteinmgs.sector have been classified as active or passive heating or cooling systems. systems. Passive thermal energy systems can effectively enhance the naturally available heat energy sources in order to maintain the comfort conditions in buildings and minimize the use of mechanically assisted heating or cooling systems.

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