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Energy Systems for Multigeneration Purposes

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Energy Systems for Multigeneration Purposes ( energy-systems-multigeneration-purposes )

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Figure 6.69: Scattered distribution of decision variables with population in Pareto frontier: biomass flow rate (a), ORC pump inlet temperature (b), ORC turbine inlet pressure (c) and ORC turbine inlet temperature (d)....................................................................................................................................... 180 Figure 6.70: Scattered distribution of decision variables with population in Pareto frontier: inch point temperature (a), ORC turbine isentropic efficiency (b), ORC pump isentropic efficiency (c) and absorption chiller evaporator temperature (d). ....................................................................................... 181 Figure 6.71: Effects of biomass flow rate on both objective functions. ................................................. 182 Figure 6.72: Effects of turbine inlet pressure on both objective functions. ............................................ 183 Figure 6.73: Effects of turbine inlet pressure on both objective functions. ............................................ 184 Figure 6.74: Effects of evaporator pinch point temperature on both objective functions. ...................... 185 Figure 6.75: Effects of turbine isentropic efficiency on both objective functions. ................................. 186 Figure 6.76: Effects of pump isentropic efficiency on both objective functions. ................................... 187 Figure 6.77: Effects of absorption chiller on both objective functions. .................................................. 187 Figure 6.78: Exergy destruction rates for the Integrated OTEC based multigeneration system and its components. ........................................................................................................................................... 191 Figure 6.79: Dimensionless exergy destruction ratio for the multigeneration system and its components. . ................................................................................................................................................................ 191 Figure 6.80: Effect of varying inlet air mass flow rate and PV/T length on exergy efficiency of the PV/T collector. ................................................................................................................................................ 192 Figure 6.81: Effects of varying PV/T length and width on electricity generated by the PV/T collector. 193 Figure 6. 82: Effects of varying PV/T length and width on electricity generated by the PV/T collector. 193 Figure 6.83: Effects of varying seawater warm surface mass flow rate on the system exergy efficiency and exergy destruction rate of the system. .................................................................................................... 194 Figure 6.84: Effects of varying seawater warm surface mass flow rate on the net power output and total cost rate of the system............................................................................................................................ 195 Figure 6.85: Effects of varying solar radiation intensity on the exergy efficiency of the system. .......... 196 Figure 6.86: Effects of varying condenser temperature on the net power output the system.................. 196 Figure6.87:Effectsofvaryingsolarintensityonthetotalexergydestructionofthesystem. ...............197 Figure6.88:Effectsofvaryingsolarintensityonthetotalexergydestructionofthesystem. ...............198 Figure 6.89:Effects of varying pinch point temperature on the exergy efficiency and total exergy destruction rate of the system. ................................................................................................................ 198 Figure 6.90: Effects of varying pinch point temperature on the hydrogen production and total cost rate of the system. ............................................................................................................................................. 199 12

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