Engineering Fluid Mechanics 10th Edition by Donald Elger, Clayton Crowe, John Roberson, Barbara Williams – Ebook PDF Instant Download/Delivery: 1118372204 ,9781118372203
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Product details:
ISBN 10: 1118372204
ISBN 13: 9781118372203
Author: Donald Elger, Clayton Crowe, John Roberson, Barbara Williams
This text is an unbound, binder-ready edition.
Written by dedicated educators who are also real-life engineers with a passion for the discipline, Engineering Fluid Mechanics, 10th Edition, carefully guides students from fundamental fluid mechanics concepts to real-world engineering applications. The Tenth Edition and its accompanying resources deliver a powerful learning solution that helps students develop a strong conceptual understanding of fluid flow phenomena through clear physical descriptions, relevant and engaging photographs, illustrations, and a variety of fully worked example problems. Packed with more than 1,100 problems– including open-ended design problems and computer-oriented problems–this text offers ample opportunities for students to apply fluid mechanics principles as they build knowledge in a logical way and enjoy the journey of discovery.
Engineering Fluid Mechanics 10th Edition Table of contents:
-
Introduction to Fluid Mechanics
- Basic concepts and definitions
- Properties of fluids
- Fluid statics
- Units and dimensions
-
Fluid Statics
- Pressure and its measurement
- Hydrostatic forces on submerged surfaces
- Buoyancy and stability
-
Fluid Kinematics
- Velocity and acceleration fields
- Types of fluid flow (steady, unsteady, laminar, turbulent)
- Streamlines, pathlines, and streaklines
-
Fluid Dynamics
- Continuity equation
- Momentum equations
- Bernoulli’s equation and applications
- Euler’s equation of motion
- Control volume analysis
-
Viscous Flow
- Shear stress and viscosity
- Laminar and turbulent flow
- Navier-Stokes equations
- Boundary layers
- Flow in pipes and ducts
-
Internal Flow
- Flow in pipes: laminar and turbulent
- Darcy-Weisbach equation
- Minor losses in pipe flow
- Flow in non-circular ducts
-
External Flow
- Flow around bodies
- Drag and lift forces
- Boundary layer theory
- Flow over flat plates and cylinders
-
Dimensional Analysis and Similarity
- Buckingham Pi Theorem
- Similitude and model testing
- Reynolds number and its significance
-
Flow in Open Channels
- Uniform flow
- Flow resistance and Manning’s equation
- Flow transitions and channel design
-
Compressible Flow
- Compressibility of gases
- Speed of sound and Mach number
- Shock waves and expansion waves
-
Flow Measurement
- Flow meters (orifices, venturi, turbine)
- Pitot tubes and flow velocity measurement
-
Introduction to Computational Fluid Dynamics (CFD)
- Basics of CFD modeling and analysis
- Numerical methods for fluid flow
-
Miscellaneous Topics
- Multiphase flows (bubbles, droplets, particles)
- Transport phenomena in fluid systems
Appendices
- Physical properties of fluids
- Conversion factors
- Tables for fluid properties
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