Calculate the heat transfer per lbmol fuel
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Find the mixture temperature before combustion and the work, assuming an adiabatic turbine.
Find the heat transfer, Q1 (kJ/kmol fuel). Find the enthalpy of formation of the fuel as vapor. Find the specific turbine work output, W (kJ/kmol fuel).
What is the T after the compressor, assuming a simple adiabatic compression from 100 kPa to 1.2 MPa?
The products then cool to 1200 K, state 3. Find the final pressure, P3, the total heat transfer, 1Q3, and the temperature immediately after combustion, T2.
The reactants enter the combustion chamber at 77 F, and the products exit at 140 F, 15.7 lbf/in.2. Calculate the heat transfer per lbmol fuel.
What is the heat transfer for this process? Compare this to an older furnace where the products exit at 450 F, 15.7 lbf/in.2.
Products at one point are brought to 1300 R and used in a heat exchanger, where they are cooled to 77 F. Find the specific heat transfer in the heat exchanger.
Find the required equivalence ratio in case A and the amount of argon, x, for a stoichiometric ratio in case B.
Acetylene gas, C2H2, is burned with stoichiometric air in a torch. The reactants are supplied at the reference. Compute the heat loss per kmol of fuel.
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