Opening book details…
Can I read Principles of Gas-Solid Flows (Cambridge Series in Chemical Engineering) on EtoBox?
Principles of Gas-Solid Flows (Cambridge Series in Chemical Engineering) by Liang-Shih Fan; Jian Zhang; Chao Zhu is a nonfiction available to read on EtoBox.
What is Principles of Gas-Solid Flows (Cambridge Series in Chemical Engineering) about?
Gas-solid flows are involved in numerous industrial processes and occur in various natural phenomena. This authoritative book addresses the fundamental principles that govern gas-solid flows and the application of these principles to various gas-solid flow systems. The book is arranged in two parts: Part I deals with basic relationships and phenomena, including particle size and properties, collision mechanics, momentum transfer, heat and mass transfer, basic equations, and intrinsic phenomena in gas-solid flows. Part II discusses gas-solid flow systems of industrial interest such as gas-solid separators, hoppers and standpipes, dense-phase fluidized beds, fluidized beds, pneumatic conveying systems, and heat and mass transfer in fluidization systems. As a comprehensive text on gas-solid flows, which includes end-of-chapter problems, this book is aimed at students, but will also be useful to a broad range of engineers and applied scientists. Solutions manual available.
Who reads Principles of Gas-Solid Flows (Cambridge Series in Chemical Engineering)?
It is typically read by self-directed learners exploring a subject in depth.
Common subject areas: history, science, philosophy, social sciences.
- Author
- Liang-Shih Fan; Jian Zhang; Chao Zhu
- Publisher
- Cambridge University Press (Virtual Publishing)
- Published
- 1998
- Language
- EN
- ISBN
- 9780521021166
- Category
- nonfiction
- Subjects
- Science, Technology, Chemistry
Other editions & translations
More by Liang-Shih Fan; Jian Zhang; Chao Zhu
Browse all works by Liang-Shih Fan; Jian Zhang; Chao Zhu
Similar books
- Gas-Liquid-Solid Fluidization Engineering (Butterworth's Series in Chemical Engineering) — Howard Brenner (1989)
- Computational Models for Turbulent Reacting Flows (Cambridge Series in Chemical Engineering) — Rodney O. Fox (2003)
- Molecular Gas Dynamics and the Direct Simulation of Gas Flows (Oxford Engineering Science Series) — G. A. Bird (1994)
- Gas Flows in Microsystems — Stéphane Colin, Lucien Baldas (2019)
- Asymptotic Theory of Supersonic Viscous Gas Flows (Aerospace Engineering) (Aerospace Engineering) — Vladimir Neyland; V Bogolepov; G N Dudin; I Lipatov; Referex Mechanical Engineering and Materials (2008)
- Collisions in Particle-laden Gas Flows — Aleksej Y. Varaksin (2013)
