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Low-Grade Heat Conversion into Power Using Small Scale Organic Rankine Cycles

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Low-Grade Heat Conversion into Power Using Small Scale Organic Rankine Cycles ( low-grade-heat-conversion-into-power-using-small-scale-organ )

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Table 5.2b - Flow parameters for configuration 2 (Regenerative Rankine engine with internal heat exchanger) ...................................................................................................... 121 Table 5.2c - Flow parameters for configuration 3 (Rankine engine with open feedliquid heater).................................................................................................................. 122 Table 5.2d - Flow parameters for configuration 4 (Rankine engine with closed feedliquid heater).................................................................................................................. 122 Table 5.3 - Thermodynamic characteristics for different configurations ............................. 123 Table 5.4 - Components characteristics and operating conditions........................................ 132 Table 5.5 - Flow parameters of the system ............................................................................... 133 Table 5.6 - Exergy characteristics of different components ................................................... 134 Table 6.1 - Thermophysical, safety and environmental data of candidate fluids................. 137 Table 6.2 - Characteristics of the heat exchangers ................................................................... 142 Table 6.3 - Characteristics of the pumps ................................................................................... 142 Table 6.4 - Measured parameters and characteristics of the instruments used.................... 144 Table 6.6 – Irreversibilities .......................................................................................................... 157 Table 6.7 - Exergetic efficiencies ................................................................................................ 159 Table 6.8 - Main results obtained for different fluids.............................................................. 162 Table 7.1 - List of considered working fluids ........................................................................... 166 Table 7.2 - Thermodynamic parameters at maximum net power output............................. 173 Table 7.3 - Design parameters of the optimized system ......................................................... 173 Table 7.4 - System cost data ........................................................................................................ 175 Table 7.5 - Three-parameters optimization of the SIC ........................................................... 184 Table 7.6 - One-parameter optimization of the net power output for ΔTpp,cd =10 K and ΔTpp,ev =15 K ........................................................................................................................... 184 Page | 22

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