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128 conventional CAES is the treatment to the heat of compression. While in conventional CAES 129 plants the waste heat is dumped to the atmosphere in AA-CAES and D-CAES plants the waste 130 heat is recovered and stored [57]. Zhang et al. [58] designed a system where the IWH from an 131 AA-CAES compression process was recovered and stored in a water storage tank to be later 132 reused in the expansion work to generate higher values of peak power (Figure 13). Results 133 showed that with this design, the AA-CAES system power and thermal efficiencies could be 134 increased. Safei and Keith [59] simulated the IWH recovery from a D-CAES compression 135 process in order to store it in a water storage tank to further be used to meet space and water 136 heating loads in a DH network. The authors analysed the economic feasibility of the system in 137 regards of many design parameters. However, they highlighted that the suitability of the system 138 largely depends on the application and the market environment in which the plant is operating. 129 130 131 Figure 13 Scheme of the AA-CAES system coupled with TES [58] 132 142 The process of desalination requires a significant amount of energy and significant capital costs. 143 Therefore, Gude [60] analysed a variable energy source desalination plant (both solar and 144 process waste heat) where the addition of TES could improve economics, better resource 145 management and lower environmental emissions (Figure 14). After a comparison and 146 discussion of the TES materials, molten salts, concrete, PCM, steam and hot water were 147 proposed for storing IWH and solar energy to be later reused in a thermal desalination plant. In 148 this facility, molten salts, concrete, PCM and steam are proposed for multi stage flash, multi- 149 effect evaporation, mechanical vapour compression and reverse osmosis desalination processes; 150 while hot water is proposed for solar still, humidification-dehumidification, membrane 151 distillation, and other low temperature desalination processes. 143 23PDF Image | Thermal Energy Storage TES Industrial Waste Heat Recovery
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