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Thermal non-equilibrium in heterogeneous media
- 作者: Lemos, Marcelo J.S. de, author.
- 其他作者:
- 其他題名:
- SpringerBriefs in applied sciences and technology.
- 出版: Cham : Springer International Publishing :Imprint: Springer
- 叢書名: SpringerBriefs in applied sciences and technology. Computational mechanics,
- 主題: Porous materials--Thermal properties. , Heat--Transmission. , Engineering. , Engineering Thermodynamics, Heat and Mass Transfer. , Characterization and Evaluation of Materials. , Engineering Fluid Dynamics.
- ISBN: 9783319146669 (electronic bk.) 、 9783319146652 (paper)
- FIND@SFXID: CGU
- 資料類型: 電子書
- 內容註: Chapter 1 Heterogeneous Media -- Chapter 2 Modeling Of Thermal Non-Equilibrium -- Chapter 3 Moving Systems -- Chapter 4 Combustion Systems -- Chapter 5 Double Diffusion -- Chapter 6 Final Remarks.
- 摘要註: This book presents, in a self-contained fashion, a series of studies on flow and heat transfer in porous media, in which distinct energy balances are considered for the porous matrix and for the permeating fluid. Detailed mathematical modeling is presented considering both volume and time averaging operators simultaneously applied to the governing equations. System involving combustion in the gaseous phase, moving bed and double-diffusion mechanism are analyzed. Numerical results are presented for each case. In the end, this book contains the description of a tool that might benefit engineers in developing and designing more efficient thermal equipment.
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讀者標籤:
- 系統號: 005357749 | 機讀編目格式
館藏資訊
This book presents, in a self-contained fashion, a series of studies on flow and heat transfer in porous media, in which distinct energy balances are considered for the porous matrix and for the permeating fluid. Detailed mathematical modeling is presented considering both volume and time averaging operators simultaneously applied to the governing equations. System involving combustion in the gaseous phase, moving bed and double-diffusion mechanism are analyzed. Numerical results are presented for each case. In the end, this book contains the description of a tool that might benefit engineers in developing and designing more efficient thermal equipment.
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Google Book
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