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9780071626811

Fluid Mechanics DeMYSTiFied

by
  • ISBN13:

    9780071626811

  • ISBN10:

    0071626816

  • Edition: 1st
  • Format: Paperback
  • Copyright: 2009-05-22
  • Publisher: McGraw-Hill Education

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Summary

Your solution to mastering fluid mechanicsNeed to learn about the properties of liquids and gases the pressures and forces they exert? Here's your lifeline! Fluid Mechanics Demystified helps you absorb the essentials of this challenging engineering topic. Written in an easy-to-follow format, this practical guide begins by reviewing basic principles and discussing fluid statics. Next, you'll dive into fluids in motion, integral and differential equations, dimensional analysis, and similitude. Internal, external, and compressible flows are also covered. Hundreds of worked examples and equations make it easy to understand the material, and end-of-chapter quizzes and two final exam, with solutions to all their problems, help reinforce learning.This hands-on, self-teaching text offers: Numerous figures to illustrate key concepts Details on Bernoulli's equation and the Reynolds number Coverage of entrance, laminar, turbulent, open channel, and boundary layer flows SI units throughout A time-saving approach to performing better on an exam or at workSimple enough for a beginner, but challenging enough for an advanced student, Fluid Mechanics Demystified is your shortcut to understanding this essential engineering subject.

Author Biography

Merle C. Potter taught fluid mechanics for 42 years at Michigan Tech, The University of Michigan, and Michigan State University. He is the author of several engineering books. Dr. Pottern++s research has been in theoretical and experimental fluid mechanics and energy analysis of buildings. He has received several teaching awards including the 2008 American Society of Mechanical Engineern++s James Harry Potter Gold Medal.

Table of Contents

Basic Information
Dimensions, Units, and Physical Quantities
Gases and Liquids
Pressure and Temperature
Properties of Fluids
Thermodynamic Properties and Relationships
Statics
Pressure Variation
Manometers
Forces on Plane and Curved Surfaces
Accelerating Containers
Fluids in Motion
Fluid Motion
Classification of Fluid Flows
Bernoullin++s Equation
Integral Equations
System-to-Control-Volume Transformation
Conservation of Mass
The Energy Equation
The Momentum Equation
Differential Equations
Differential Continuity Equation
Differential Momentum Equation
Differential Energy Equation
Dimensional Analysis and Similitude
Dimensional Analysis
Similitude
Internal Flows
Entrance Flow
Laminar Flow in a pipe
Laminar Flow between Parallel Plates
Laminar Flow between Rotating Cylinders
Turbulent Flow in a Pipe
Open Channel Flow
External Flows
Flow Around Blunt Bodies
Flow Around Airfoils
Potential Flow
Boundary layer Flow
Compressible Flow
Speed of Sound
Isentropic Nozzle Flow
Normal Shock Waves
Oblique Shock Waves
Expansion Waves Final Practice Exams
Units and Conversions
English units, SI units, and their conversion factors
Conversions of units
Vector Relationships
Fluid Properties
Properties of Water
Properties of Air at Atmospheric Pressure
Properties of the Standard Atmosphere
Properties of Ideal Gases at 300 K
Properties of Common Liquids
Compressible Flow Tables for Air
Isentropic Flow
Normal-Shock Flow
Prandtl-Meyer Function
Table of Contents provided by Publisher. All Rights Reserved.

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