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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Figure 20. Essential Parts of a Thermophotovoltaic System [35] ................................................ 53 Figure 21. Specific Heat and Density of Saturated Water at Different Temperatures. ................ 56 Figure 22. Specific Heat at Different Temperatures for Different Concentrations Based on Weight Over its Corresponding Temperature Range [60]. ..................................... 58 Figure 23. Specific Heat at Different Temperatures for Different Concentrations Based on Weight over its Corresponding Temperature Range [59]. ...................................... 59 Figure 24. DOWTHERM G Specific Heats and Density at Different Temperatures [14]. .......... 60 Figure 25. Properties of UCON HTF 500 Across Temperature Range [58]. ............................... 61 Figure 26. Properties of Therminol XP Across Temperature Range [56]. ................................... 62 Figure 27. Maximum Operating Temperatures for Heat Transfer Fluids..................................... 65 Figure 28. Viscosities vs. Temperature for Heat Transfer Fluids................................................. 66 Figure 29. Volumetric Heat Capacity for Heat Transfer Fluids Across Temperature Range....... 67 Figure 30. Centrifugal Pump Cross Sections [31] ........................................................................ 69 Figure 31. Layout and Components of Reciprocating Pump [39]. ............................................... 71 Figure 32. Internal Bearing Twin Screw Pump Design [1]. ......................................................... 72 Figure 33. Example of Pulse-width Modulation [44]. .................................................................. 74 Figure 34. Flow Rate vs. Head for Positive Displacement and Centrifugal Pumps [49]. ............ 76 Figure 35. Flow Rate percentage vs. Viscosity of fluid [49]. ....................................................... 77 Figure 36. Efficiency vs. Head for PD and Centrifugal Pumps [47]. ........................................... 77 Figure 37. Energy Savings Potential by Preheating Combustion Air........................................... 81 Figure 38. Example Facility Layout. ............................................................................................ 87 Figure 39. Piping Layout for Heat Recovery System. ................................................................ 100 Figure 40. HX1 Design Model and Schematic. .......................................................................... 101 Figure 41. Condensing Economizer Design Model and Schematic. ......................................... 102 Figure 42. Absorption Chiller Loop Pump and System Curve [50]. .......................................... 105 xi

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