<P>Developed by the authors, generalized structured component analysis is an alternative to two longstanding approaches to structural equation modeling: covariance structure analysis and partial least squares path modeling. Generalized structured component analysis allows researchers to evaluate the
Introduction to Transport Phenomena Modeling: A Multiphysics, General Equation-Based Approach
β Scribed by Gianpaolo Ruocco (auth.)
- Publisher
- Springer International Publishing
- Year
- 2018
- Tongue
- English
- Leaves
- 296
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
This textbook offers an introduction to multiple, interdependent transport phenomena as they occur in various fields of physics and technology like transport of momentum, heat, and matter. These phenomena are found in a number of combined processes in the fields of chemical, food, biomedical, and environmental sciences. The book puts a special emphasis on numerical modeling of both purely diffusive mechanisms and macroscopic transport such as fluid dynamics, heat and mass convection.
To favor the applicability of the various concepts, they are presented with a simplicity of exposure, and synthesis has been preferred with respect to completeness. The book includes more than 130 graphs and figures, to facilitate the understanding of the various topics. It also presents many modeling examples throughout the text, to control that the learned material is properly understood.
β¦ Table of Contents
Front Matter ....Pages i-xviii
Transport Phenomena and Multiphysics Modeling (Gianpaolo Ruocco)....Pages 1-12
Heat Transfer by Conduction (Gianpaolo Ruocco)....Pages 13-66
Momentum Transfer (Gianpaolo Ruocco)....Pages 67-144
Heat Transfer by Convection (Gianpaolo Ruocco)....Pages 145-199
Mass Transfer by Diffusion and Convection (Gianpaolo Ruocco)....Pages 201-239
Modeling Examples of PCB Processes (Gianpaolo Ruocco)....Pages 241-279
Back Matter ....Pages 281-284
β¦ Subjects
Engineering Thermodynamics, Heat and Mass Transfer
π SIMILAR VOLUMES
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