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 5, Problem 5.28P

(a)

Interpretation Introduction

Interpretation:

The value of the angle θ1 such that the flow entering the pump is parallel to its vanes is to be determined.

Concept Introduction:

The parameters used to define a cartesian coordinate system are x,y, and z , where x defines the distance on x -axis, y defines the distance on y -axis, and z defines the distance on z -axis.

The parameters used to define a cylindrical coordinate system are r,θ, and z , where r defines the radial distance from the point of reference, θ defines the direction of the point from the reference point, and z defines the perpendicular distance.

The relationship between x,y,z and r,θ,z are:

  x=rcosθy=rsinθz=z

(b)

Interpretation Introduction

Interpretation:

The axial load on the shaft is to be determined.

Concept Introduction:

The general equation written for the overall linear momentum balance for a controlled volume is:

  F=C.Svρ(vn)dA+tC.VρvdV

..... (1)

Here, C.S is the control surface over which the integral dA is taken, C.V is the control volume over which the integral dV is taken, ρ is the density of the fluid, v is the velocity vector, n is the direction of the vector v , The product vn is scalar defined as:

  vn=|v||n|cosθ

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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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