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To determine the amount of energy required to supply the facility with domestic hot water, another thermodynamic analysis is considered. For this analysis, the amount of hot water consumption must be known. To determine this, as mentioned previously, it has been estimated that each employee will consume one gallon each day. For the facility considered, there are 35 employees that work for eight hours each day. This leads to an average consumption of about 5 gallons per hour. The incoming water temperature is also assumed to be an average of 55°F and heated to a temperature of 110°F. where Qwater . = Vwater x ρwater x Cp,wat x (Thot - Tlow) = 5 gallons/hr x 0.134 ft3/gallon x 62.2 lbm/ft3 x 1.0 Btu/lbm-°F x 55°F) = 0.002 MMBtu/hr =amount of energy required to create demand of domestic hot water = volumetric flow rate of domestic hot water = average density of water = average specific heat of water = final temperature of domestic hot water Qwater . Vwater ρwater Cp,water Thot Tlow = average inlet water temperature to the hot water The complexity in this system comes in with the glue baths. For this analysis it will be assumed that the system can be heated by installing a tubular heat exchanger on the outside of the bath with an insulation backing. The energy input required to maintain the temperature above the melting point can be calculated and this amount will be taken as the required waste heat energy. The calculation is made by arguing that to maintain the current temperature within the glue 92 (110°F –PDF Image | TUDY OF LOW-GRADE WASTE HEAT RECOVERY
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