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STUDY OF LOW-GRADE WASTE HEAT RECOVERY

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TUDY OF LOW-GRADE WASTE HEAT RECOVERY ( tudy-low-grade-waste-heat-recovery )

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Once the average input and operating hours are known, the annual energy reduction for each process can be determined. This information is shown in the following table and is broken up by the type of energy that the energy use reduction will offset, whether it be electricity or natural gas. Table 11. Energy Purchased Reductions NG Reduct. (MMBt u/ yr) - 18 - 4,688 - 6,570 405 - - - - 11,680 To translate this energy savings into a monetary savings, information about the electrical and natural gas bills must be known. The facility considered for this design is charged both an energy rate and demand rate for electricity. This cost is $0.0541/kWh for energy consumption and $13.7863/kW-month for the peak electrical demand throughout the month. Each of the purchased energy reductions that are tied to electrical consumption reduce the overall energy purchased for the facility by reducing the amount of energy consumed. However not all of the savings opportunities will necessarily reduce the system’s peak demand. For this to occur, the specific piece of equipment would have to be operating at the moment of the peak energy demand, and then by being able to reduce or eliminate this electrical consumption, the peak System Space Heating Domestic Hot Water Glue Baths Intermittent Demand (L1) Absorption Chiller Preheating Feedwater Intermittent Demand (L2) HX1 Loop Pump Operating Hours (hrs/yr) Average Energy Demand 330,000 Btu/hr 2,000 Btu/hr 65,000 Btu/hr 3,210,675 Btu/hr 170,000 Btu/hr 750,000 Btu/hr 554,800 Btu/hr Type of Energy Offset Electricity NG Electricity NG Electricity NG NG Electricity Electricity Electricity Electricity Electrical Reduction (kWh/yr) 101,553 - 166,882 - 104,631 - - -37,576 -8,169 -1,960 -327 1,050 8,760 8,760 1,460 2,100 8,760 730 8,760 8,760 8,760 1,460 4.3 kW 0.9 kW 0.2 kW 0.2 kW System Loop Pump Chiller Loop Pump Intermittent Loop Pump Total 325,034 112

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