Determine power of the exit in the second turbine in kw


A water flux expands in an adiabatic turbine from T1=1000 K and a Pression P1=20 bar to P2 = 5 and T2=650K, producing 1000 kW. Then, it is heated in a heat exchanger up to an unknown T3 temperature (there is no drop of pressure in none of the currents). Finally, the vapor flux expands in another adiabatic turbine up to T4=600K & P4=1bar. The heat exchanger is put through a masic flux of 2500 kg/min of air which enters at T5=1400K and P5=1.35 bar and exits at a temperature T6. Considering the Ideal Gas Model for air and Real Substance Model for water: - Determine T3 in K. - Determine the Power of the exit in the second turbine in kW - Represent those processes in a p-v diagram.

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Mechanical Engineering: Determine power of the exit in the second turbine in kw
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