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Please In a 1-1 pass shell and tube exchanger, steam is condensing in the shell side at a temperature (T.) or 135C and the cold

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In a 1-1 pass shell and tube exchanger, steam is condensing in the shell side at a temperature (T.) or 135C and the cold fluid is heated from a temperature (T) of 20C to a temperature (T) of 90C. The energy balance equation for this heat exchanger is In I-T VA T.-T.mc where U is the overall heat transfer coefficient, A is the heat transfer arca, tin is the mass flow rate of the cold fluid and is its specific heat. Tube side fluid is in a turbulent flow and the heat transfer coefficient can be estimated from the following equation: Nu = 0,023 (Re)" (Pr)" where Nu is the Nusselt number, Re is the Reynolds number and Pr is the Prandel number. The condensing heat transfer coefficient in the shell side is significantly higher than the tube side heat transfer coefficient. The resistance of the wall to heat transfer is negligible. If only the mass flow rate of the cold fluid is doubled, what is the outlet temperature (in "C) of the cold fluid at steady state

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