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FUNDAMENTALS OF THERMODYNAMICS
THE FIRST LAW OF THERMODYNAMICS
THE PROPERTIES OF GASES
11 other sections not shown
adiabatic analysis Assuming boiler Btu/lb degF calculate carbon Carnot cycle coefficient of performance combustion chamber compression ratio compressor condenser constant pressure constant volume Diesel cycle dry flue dryness fraction duct effect enthalpy enthalpy drop entropy equal evaporator expansion externally reversible feed water Figure flow energy equation fluid fresh charge frictional ft/s fuel gas turbine heat exchanger heat rejected heat supplied heat transfer heater Hence high pressure horsepower ideal increase indicator diagram inlet input intercooler internal energy irreversible isentropic efficiency isothermal lbf/in2 liquid loge low pressure mass flow rate maximum mechanical cycle mole moving blades non-flow nozzle operation outlet output oxygen perfect gas polytropic pound pressure and temperature pressure ratio properties pump quantity Question Rankine cycle reaction refrigerant reheat saturated Solution specific heats specific volume speed stage steam stroke superheated swept volume thermal efficiency throat throttling valve vessel volumetric efficiency wet vapour whilst