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91 driven by the IWH recovered from both a thermal power plant and solar collectors in Saudi 92 Arabia. In a related experimental work, a test rig was built using a water tank as TES system to 93 store the IWH coming from a steam turbine. Results transferred to a 47 MW industrial steam 94 turbine showed fuel savings up to 1844 kg/h. 92 93 2.2.3 Incineration plants 94 102 Energy recovery from waste is the conversion of non-recyclable waste materials into useable 103 heat, electricity, or fuel through a variety of processes. This process is often called waste-to- 104 energy [54]. IWH recovery from incineration plants is considered to be the next logical step to 105 make the most of optimising the use of waste and to reduce carbon emissions [55]. In 1981, a 106 15000 m3 rock cavern filled with water was built in Avesta (Sweden) for short-term TES of the 107 IWH produced in a nearby incineration plant with the aim of being used for both research 108 purposes and in the Avesta DH system (Figure 12) [56]. In those systems, the power of injection 109 is very high, so, in addition, they can be used to meet very high powers. 103 104 105 Figure 12 Schematic draw of the water-filled rock cavern built in Avesta (Sweden) [56] 106 107 2.2.4 Other unspecific industrial activities 108 111 Other case studies have been found in the literature where an unspecific industrial waste source 112 is recovered by means of TES. However, the authors focused in the TES system and not in the 113 IWH source. That is the case of two CAES facilities and a desalination plant. 112 117 In a CAES plant, ambient air is compressed and stored under pressure in an underground 118 cavern. When electricity is required, the pressurized air is heated and expanded in an expansion 119 turbine driving a generator for power production [57]. The implementation of TES systems has 120 been proposed to two different types of CAES systems: an advanced adiabatic CAES (AA- 121 CAES) and a distributed CAES (D-CAES). The main difference of these systems to 22PDF Image | Thermal Energy Storage TES Industrial Waste Heat Recovery
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