Fundamentals of Momentum, Heat, and Mass Transfer
Fundamentals of Momentum, Heat, and Mass Transfer
6th Edition
ISBN: 9781118947463
Author: James Welty, Gregory L. Rorrer, David G. Foster
Publisher: WILEY
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Chapter 4, Problem 4.3P
Interpretation Introduction

Interpretation:The value of the average velocity in 1.5ft pipe should be calculated.

Concept introduction:Law of conservation of mass: It states that energy can neither be created nor be destroyed. The generalized form of an equation is written as:

[Rate of mass in from control volume] - [Rate of mass out from control volume] + [Rate of accumulation]

Equation of integrated mass balance over control volume,

  c,sρ( v n )dA+ddtc,VρdV

Where,

  v is the velocity vector.

  n is the normal vector

  ρ is the density

  dA is the small element of the area on the control surface.

  dV is the control volume.

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11:01 ☑ canvas.ucsd.edu 口 : ... Page 1 > of 2 Q - ZOOM + 4. Consider the two separate sets of measured data for a silt-loam soil measured by Mualem (1976): (1) suction versus water content, and (2) suction versus relative permeability of unsaturated soil, k/ks. Assume that 0s 0.396, 0res = 0.131, and Ks=5.74×10-7 m/s. a. Using the method of least squares in Excel, compute the best-fit values for αNG (kPa¹) and nvg for the van Genuchten (1980) relationship for data set # 1 (assume m = 1-1/nvG). See the example spreadsheet in the homework folder under the files section of Canvas for help in performing this calculation. b. Repeat part (a) and estimate the λ and ac parameters for the Brooks and Corey (1964) SWRC for data set #1. Note that you may need to include an "if" statement at the air entry suction. c. Plot the data for the SWRC versus the fitted van Genuchten (1980) and Brooks and Corey (1964) curves. Which relationship matches the capillary pressure data better (BC or VG)? Explain…
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