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144 145 Figure 14. Thermal desalination plant powered by both solar collectors and IWH [60] 146 147 3 Off-site IWH reuse 148 160 The off-site IWH recovery consists of recovering the IWH from one or more industrial 161 processes and transporting it to the heat demand to be later used, which is located at a certain 162 distance from the IWH source. Depending on the distance between the IWH source and the heat 163 demand, economical aspects and the characteristics of the heat sink, two different technologies 164 can be used to transport the TES medium: district heating and cooling (DHC) and mobilized 165 thermal energy storage system (M-TES). DHC is a suitable method to supply heat to dense 166 populated areas with large heat demand because of its economic feasibility [61,62]. Even 167 though some authors have highlighted the potential of coupling TES systems with DHC 168 networks [63], only a study has been found in which a biomass trigeneration plant is combined 169 with pit TES system and connected to a DHC network [64]. In this case, the authors stated a 170 significant increase of the plant efficiency up to 65 % and warn about the influence of the 171 energy tariffs in the economic feasibility of this solution. 161 167 On the contrary, M-TES is suitable when the investment and maintenance costs of the 168 infrastructure for DHC are high if compared to the heat demand and the distance between the 169 IWH source and the heat sink [64]. In fact, a study estimated that the maximum transport 170 distance for an efficient M-TES cycle was over 35 km when the transport is a truck, 200 km if it 171 is a train and three days if it is a boat [66].In order to ensure the technical feasibility of the M- 172 TES system, the following considerations should be accomplished: 168 170 171 172 173 173 174 High energy density: to store the highest amount of energy within the minimum volume. Hence all the auxiliary equipment should be introduced within the container. High charging and discharging energy rates: to be versatile with different IWH sources and heat demands. Ensuring the temperature stability: to avoid TES material problems within the container. Suitable operational strategy: number of cycles, storage mass, etc. 24PDF Image | Thermal Energy Storage TES Industrial Waste Heat Recovery
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