Consider the bend shown with water entering and exiting. Water enters the bend with uniform velocity...
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Consider the bend shown with water entering and exiting. Water enters the bend with uniform velocity U=7.5 m/s. The channel makes a 90 degree bend and disturbs the flow such that the velocity profile at the outlet is non-uniform and varies linearly as shown. We are given Vmax = 2Vmin. h= 75.5mm. a) Use continuity to show that Vmax = 10 m/s and Vmin = 5 m/s b) Use the values from the previous part and consider the inlet pressure as 170 kPa (abs) and outlet pressure as 130 kPa (abs). Use control volume analysis to find the x and y component of the force required to hold the bend. Vmax Vmin Consider the bend shown with water entering and exiting. Water enters the bend with uniform velocity U=7.5 m/s. The channel makes a 90 degree bend and disturbs the flow such that the velocity profile at the outlet is non-uniform and varies linearly as shown. We are given Vmax = 2Vmin. h= 75.5mm. a) Use continuity to show that Vmax = 10 m/s and Vmin = 5 m/s b) Use the values from the previous part and consider the inlet pressure as 170 kPa (abs) and outlet pressure as 130 kPa (abs). Use control volume analysis to find the x and y component of the force required to hold the bend. Vmax Vmin
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Related Book For
Fundamentals of Momentum, Heat and Mass Transfer
ISBN: 978-1118947463
6th edition
Authors: James Welty, Gregory L. Rorrer, David G. Foster
Posted Date:
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