Water is stored in a large, well-insulated storage tank at 21.0°C open to atmosphere. It is pumped at a rate of 40 m³/h to another tank 25 m above, which is also open to atmosphere. The motor driving the pump supplies energy at the rate of 9.5 kW. The water passes through a heat exchanger where 255 kW of heat is added to the water. The total friction loss (EF) in the system is 90.25 J/kg. Determine the final temperature of the water at the second tank. heat exchanger 25 m pump

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
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5. Water is stored in a large, well-insulated storage tank at 21.0°C open to atmosphere. It
is pumped at a rate of 40 m³/h to another tank 25 m above, which is also open to
atmosphere. The motor driving the pump supplies energy at the rate of 9.5 kW. The
water passes through a heat exchanger where 255 kW of heat is added to the water. The
total friction loss (ZF) in the system is 90.25 J/kg. Determine the final temperature of
the water at the second tank.
heat
exchanger
25 m
pump
Transcribed Image Text:5. Water is stored in a large, well-insulated storage tank at 21.0°C open to atmosphere. It is pumped at a rate of 40 m³/h to another tank 25 m above, which is also open to atmosphere. The motor driving the pump supplies energy at the rate of 9.5 kW. The water passes through a heat exchanger where 255 kW of heat is added to the water. The total friction loss (ZF) in the system is 90.25 J/kg. Determine the final temperature of the water at the second tank. heat exchanger 25 m pump
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