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Application Guide Hot Liquid to Electricity 280 kW Power

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Application Guide Hot Liquid to Electricity 280 kW Power ( application-guide-hot-liquid-electricity-280-kw-power )

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OVERVIEW OVERVIEW This document is intended to be a supplement to the PureCycle power system Product Data and Application Guide (HTE66510). Additional performance parameters are provided herein for site design assistance. APPLICATION GUIDELINES Power Output Power output is a function of installation-specific variables, including resource liquid temperature and flow rate and cooling water temperatures. This document will describe the influence of these installation-specific variables and provide guidelines for system performance. Interested customers should complete the Project Requirements Document (PRD) in Appendix B of the Product Data and Applications Guide (HTE66510) and contact Pratt & Whitney Power Systems for specific application performance and optimization. Hot-Liquid-Resource Temperature and Flow The PureCycle power system generally requires a hot-liquid-resource temperature between 195°F (90oC) and 300°F (149oC) and a cold water source of 85oF (30°C) or less. The hot resource flow required to produce full power output varies between 180 and 1100 gpm and is a function of installation-specific variables, including resource liquid temperature and cooling water temperature. For information on applications outside of these temperature and flow ranges, please complete the PRD in Appendix B and consult your PWPS sales consultant or applications engineer. Figure 1 describes PureCycle power system full power output and describes the resource flow and temperature requirements to produce full power at various cooling water temperatures. Multiple systems can be installed if sufficient flow is available. Two machines operating in parallel would require twice the flow of one machine. PureCycle® Model 280 Performance 280 kW Gross, 260 kW Net, 60 Hz/480V Carbon Steel Evaporator, Copper Condenser Resource Flow (l/s) 6 11 16 21 26 31 36 41 46 51 56 61 66 300 147 142 137 132 127 122 117 112 107 102 290 280 270 260 250 240 230 220 210 200 190 180 Below Minimum Evaporat or Flow Rate 80oF (26.6oC) Cooling Water Inlet Temperature 97 60oF (15.5oC) Cooling Water Inlet Temperature 92 70oF (21oC) Cooling Water Inlet Temperature 50oF (10oC) Cooling Water Inlet Temperature 87 82 100 150 200 250 300 350 400 450 500 550 600 650 700 750 800 850 900 950 1000 1050 1100 Resource Flow (gpm) Figure 1 – PureCycle Model 280 Performance Assumptions: 18oF (10oC) Cooling Water DT Cooling Water Flow Rate: 960 gpm (58 l/s) for resource Revision A – 09/23/2009 – Page 5 HTE75367 Resource Temperature (oF) Resource Temperature (oC)

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