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the thermal storage tank must also be considered and should be capable of storing enough energy to adequately supply the intermittent demand when required while still maintaining enough energy to supply the main, constant demand loop. For this system, the volume of the tank is estimated to be 750 gallons, giving a total storage capacity of 1.25 MMBtu which should be an adequate size to supply both required demands at a given time. The second storage tank will be located at the end of the absorption chiller loop which means it will receive the thermal heating fluid at a lower temperature. To adequately supply the intermittent hot water supply demand, the tank must be maintained at a temperature of about 130°F. Because the temperature of the fluid supplied to the tank is around this same temperature, a phase change material that changes phase at this temperature should be selected. Also because the tank is located at the end of the loop, a thermal bypass loop should be installed to ensure fluid is not delivered to the tank at a temperature lower than the current temperature of the contents of the tank. The same company as before also provides a hydrated salt type of phase change material which has a phase change temperature of 136°F and a latent heat storage of 6,476 Btu/ft3. The volume of this storage tank is found slightly differently than before. Because the storage tank is only used to supply energy to produce hot water for a cleaning process at the end of each shift, it should only be designed to adequately store energy for this process. As mentioned previously, this design will reduce the implementation costs of the thermal storage tank but will also limit the amount of energy that can be recovered. The volume of the tank is estimated to be 325 gallons which has the capacity to store 0.3 Million Btus. Temperature Control Strategy After the required equipment has been selected for the system, the control strategy must be determined. Because of the system design, it is recommended to install a thermostatically 108PDF Image | TUDY OF LOW-GRADE WASTE HEAT RECOVERY
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