Fee Download Transport Phenomena Fundamentals, Second Edition (Chemical Industries), by Joel L. Plawsky
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Although the practice of chemical engineering has broadened to encompass problems in a range of disciplines, including biology, biochemistry, and nanotechnology, one of the curriculum’s foundations is built upon the subject of transport phenomena. Transport Phenomena Fundamentals, Second Edition provides a unified treatment of heat, mass, and momentum transport based on a balance equation approach.
Designed for a two-term course
Used in a two-term transport phenomena sequence at Rensselaer Polytechnic Institute, this text streamlines the approach to how the subject is taught. The first part of the book takes students through the balance equation in the context of diffusive transport, be it momentum, energy, mass, or charge. Each chapter adds a term to the balance equation, highlighting the effects of that addition on the physical behavior of the system and the underlying mathematical description.
The second half of the book builds upon the balance equation description of diffusive transport by introducing convective transport terms, focusing on partial rather than ordinary differential equations. The Navier–Stokes and convective transport equations are derived from balance equations in both macroscopic and microscopic forms.
�Includes examples and problems drawn from Comsol� software
The second edition of this text is now enhanced by the use of finite element methods in the form of examples and extended homework problems. A series of example modules are associated with each chapter of the text. Some of the modules are used to produce examples in the text, and some are discussed in the homework at the end of each chapter. All of the modules are located online at an accompanying website which is designed to be a living component of the course. (available on the download tab)
- Sales Rank: #1646283 in Books
- Brand: CRC Press
- Published on: 2009-09-28
- Ingredients: Example Ingredients
- Original language: English
- Number of items: 1
- Dimensions: 9.75" h x 6.75" w x 1.50" l, .0 pounds
- Binding: Hardcover
- 857 pages
- Used Book in Good Condition
About the Author
Joel Plawsky is a professor of chemical engineering at Rensselaer Polytechnic Institute in Troy, New York.
Most helpful customer reviews
4 of 5 people found the following review helpful.
The best book for newcomers in the field! Modern didactics, incl. use of symbolic input, commercial COMSOL software.
By Mark Twain
Our library just obtained a copy of this new book. The text follows an unprecedented approach to teaching the subject, see the well explained Amazon book description. Early readers and learners of transport phenomena might have wondered how the partial differential vector/tensor equations found in Bird's BSL1 (the 'red bible') could be implemented with today's computers in order to solve simplified problems of practical interest. Other readers might ask themselves how theoretically found solutions of transport PDE's, in equation format plus 2-D graphical sketch format, can be verified or reproduced by numerical methods, e.g. through programming a complex code in MATLAB. Here comes Plawsky's into play: It bridges the gap between theory-only books (BSL1; Slattery) and numerical-only books ('computational transport phenomena', by Schiesser, Shyy, et al.) by using the super user-friendly coupled transport phenomena solver COMSOL, a commercial academic software simulation package which integrates all the latest numerical methods drawn from mathematics journals and interacts with the PC user in form of GUI-customizable partial differential vector/tensor equations to be manipulated. Knowledge of the implemented numerical methods can be helpful to understand the advanced program settings/options but is not required for the use of the software. The examples and end-of-chapter problems show how a theoretical solution is derived from the general governing equations (student's brain.. hot. result: a set of equations) and then, how COMSOL solves the same set of governing symbolic(!) equations on its own via internally implemented numerical methods (CPU.. hot) to produce the same result, in form of diverse graphical 3-D visualizations (plus numerical output). I can highly recommend this modern text to first learners of the subject matter who enjoy having their laptops do all the computational job (here: the solution of coupled(!) complex time-dependent sets of ODE's/PDE's as seen in the many tables of Bird's red bible). End of chapter references are extremely well selected and integrated into the text, although sometimes referring to older book editions - just for the chapter on radiative energy transport I am missing a referencing to the outstanding monograph by M. F. Modest.
A last tip: COMSOL Multiphysics 4.2a is learned fastest by hands on the various model library PDF's, e.g. Menu>>View>>Model Library>>CFD Module>>Single-Phase Tutorials>>gravity_tutorial>>Model PDF. After reading and following the detailed step-by-step GUI instructions of several such PDF's you should feel confident enough to do the proper reading (the full COMSOL Documentation pdf set).
1 of 1 people found the following review helpful.
One Star
By Kevin
worst textbook I've ever had the displeasure of reading
0 of 0 people found the following review helpful.
Worst class ever
By Sean L
Book is ok. Worst class ever... can't wait for transport processes 2!
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