Fundamentals of Momentum, Heat and Mass Transfer
Fundamentals of Momentum, Heat and Mass Transfer
6th Edition
ISBN: 9781118804292
Author: WELTY
Publisher: DGTL BNCOM
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Chapter 6, Problem 6.15P
Interpretation Introduction

Interpretation: The pressure inside the pump at the inlet point is to be calculated by applying the energy balance equation.

Concept introduction: The energy balance across the pump is given by the Bernoulli’s equation in which the sum of Potential energy, Kinetic energy and Pressure energy is constant. The Bernoulli equation across 2 points of any system is given by:

  P1ρ+v122+ gZ1=P2ρ+v222+ gZ2   ............ (1)

P1and P2are pressure at 2 points of the pipe.

v1 and v2 are velocity at 2 points of the pipe.

Z1 and Z2 are the locations at 2 points.

  ρ=Densityof water=62.4lbs/ft3g=Accelerationduetogravity

The volumetric flow rate in air duct is given as

  Q=A×v   ............ (2)

Q = Volumetric flow rate of water

A = Area of pipe

v = Velocity at 2 points of pipe

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The power out of an adiabatic steam turbine is 5 MW and the steam enters turbine at 2 MPa and velocity of 50 m/s, specific enthalpy (h) of 3248 kJ/kg. The elevation of the inlet is 10 m higher than at the datum. The vapor mixture exits at 15 kPa and a velocity of 180 m/s, specific enthalpy (h) of 2361.01 kJ/kg. The elevation of the exit is 6 m higher than at the datum. Let g = 9.81 m/s². Assuming the ideal gas model and R = 0.462 KJ/(kg.K). The steam specific heat ratio is 1.283. Calculate:
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