Designing of a steam power plant

AI Thread Summary
A one million kW electric power plant is proposed, utilizing steam as the working fluid with a maximum steam temperature of 550°C. The cooling system will use river water, which raises concerns about environmental impact due to temperature increases. Key calculations involve determining the range of temperatures for the discharged water, with initial assumptions including Carnot efficiency and river water entering temperature. The discussion highlights the need to establish the exit conditions of the steam turbine and the resulting heat transfer equations. Research into typical mechanical efficiency for steam-generated plants is also necessary to finalize the design.
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Homework Statement



electric power = one million kW
working fluid = steam
maximum steam temperature = 550°C
river mean speed = 10m/min
river,8m deep,60 meter wide


Homework Equations




It is proposed to build a one million kW electric power plant with steam as the working fluid. The condensers are to be cooled with river water (see figure below). The maximum steam temperature will be 550°C. As an engineering consultant, you are to convince the authorities that the discharge to the river will not be harmful to the environment.



The Attempt at a Solution


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Well what is the range of temperatures can the heated water enter the river again at? (35C? Also what the exit condition of the steam turbine? Vacuum/Back pressure? If so you will need that pressure condition.
 
Initial assumptions:
1. Carnot efficiency
2. River entering temperature Tin

Then:
1st equation: 1st law expressed in time-derivative form
2nd equation: 2nd law expressed in time-derivative form
Third equation: temperature buildup of river water as function of dm/dt, c and dQ2/dt where dQ2/dt is rate of expelled heat into river, dm/dt = rate of water mass flow, c = water specific heat, J/C-kg.

So: 3 knowns: dW/dt = 1 MW, T1 = 550C, Tin
3 unknowns: dQ1/dt, dQ2/dt, ΔT
where dQ1/dt = heat rate into system and ΔT = Tout - Tin = temperature rise of river water.

Assume T2, the effective lower temperature in the Carnot cycle, is halfway between Tin and Tout, i.e. T2 = (Tin + Tout)/2.

Finally, you must do some research to find what the typical steam-generated electric plant mechanical efficiency is beyond the Carnot efficiency.
 
the the range of temperatures is 6c that is between 32-38c
thanks guys...i will try to finish it up.
 
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