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The combined system1s predicted performance 14
Thermodynamic Cycle Analysis
Operating state of the lithium bromidewater
24 other sections not shown
Absorption Cooling Unit adiabatic efficiency versus air motor Appendix assumed bore diameter Brayton cycle Btu/hour Btu/hr/ton Btu/lbm burner calcium hydroxide coal feed pump coefficient of performance components compression compressor Compressor Tests computer program cycle efficiency DATA degrees F determined enthalpy expander inlet temperature firing rate flandholders fluid friction losses heat stream temperature heat transfer helix angle HXANAL HXANL2 inlet pressure integrated energy integrated energy package iterations lbm/hour of air lbm/hr/ton leakage losses load mass flow mechanical friction OATA Oill operation optimal specific speeds percent power cycle pressure ratio psia psig Rankine cycle regenerative heat exchanger Roller-supported Rotary Vane roller-supported vane rollers Rotary Vane Machine rotor shaft speed shell shown in Figure solid fuels space heating spiral strip teflon thermal Thermodynamic power cycle tion torque ugal ui ui vane design Vane Machine Motoring volumetric capacity volumetric efficiency waste heat stream