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Theory and Modeling of Dispersed Multiphase Turbulent Reacting Flows(弥散性多相湍流反应流动的理论与模拟)

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作者:周力行
定价:99
印次:1-1
ISBN:9787302507543
出版日期:2018.08.01
印刷日期:2018.08.02

本书在介绍多相流、湍流和燃烧理论的基础上,给出了多相湍流反应流动的基本方程、单相湍流和多相湍流以及湍流燃烧的数学物理模型,讨论了求解多相湍流反应流动的数值模拟方法,最后列举了在不同燃烧装置中的应用实例。 本书适合高校和科研院所工程热物理、流体力学、热能动力等专业的师生和研究工作者阅读。 Fundamentals of multiphase flows, turbulent flows and combustion theory; Basic equations of multiphase turbulent reacting flows; modeling of turbulent flows; modeling of multiphase turbulent flows; modeling of turbulent combusting flows; numerical methods for simulation of multiphase turbulent reacting flows. 关键词:流体,湍动,多相反应,燃烧

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Multiphase, turbulent, and reacting flows are widely encountered in engi-neering and the natural environment. The basic theory, phenomena, mathe-matical models, numerical simulations, and applications of multiphase (gas or liquid flows with particles/droplets or bubbles), turbulent reacting flows are presented in this book. The special feature of this book is in combining the multiphase fluid dynamics with the turbulence modeling theory and reacting fluid dynamics (combustion theory). There are nine chapters in this book, namely: “Fundamentals of Dispersed Multiphase Flows”; “Basic Concepts and Description of Turbulence”; “Fundamentals of Combustion Theory”; “Basic Equations of Multiphase Turbulent Reacting Flows”; “Modeling of Single-Phase Turbulent Flows”; “Modeling of Dispersed Multiphase Turbulent Flows”; “Modeling of Turbulent Combustion”; “The Solution Procedure for Modeling Multiphase Turbulent Reacting Flows”; and “Simulation of Flows and Combustion in Practical Fluid Machines, Combustors and Furnaces.” The main difference between this book and pre-vious books written by the author is that more much better descriptions of basic equations and closure models of multiphase turbulent reacting flows are introduced, and recent advances made by the author and other investiga-tors between 1994 and 2016 are included. This book serves as a reference book for teaching, research, and engi-neering design for faculty members, students, and research engineers in the fields of fluid dynamics, thermal science and engineering, aeronautical, astronautical, chemical, metallurgical, petroleum, nuclear, and hydraulic engineering. The author wishes to thank Prof. F.G. Zhuang, H.X. Zhang, and C.K. Wu for their valuable comments and suggestions. Thanks also go to colleagues and former students: Prof. W.Y. Lin, R.X. Li, X.L. Wang, J. Zhang, B. Zhou, Y.C. Guo, H.Q. Zhang, L.Y. Hu, Y. Yu, F. Wang, Z.X. Zeng, K. Li, Y. Zhang; Drs. Gene X.Q. Huang, T. Hong, C.M. Liao, W.W. Luo, K.M. Sun, Y. Li, T. Chen, Y. Xu, G. Luo, M. Yang, L. Li, H.X. Gu, X.L. Chen, X. Zhang, and Y. Liu. Their research results under the direction and coopera-tion of the author contributed to the context of this book. Finally, the author’s gratitude is given to the editors from Elsevier and the Executive Editor, Dr. Qiang Li from the Tsinghua University Press for their hard work in the final editing and publishing of this book. Any comments and suggestions from the experts and readers would be highly appreciated. Lixing Zhou Tsinghua University, Beijing, China February, 2017

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  • 周力行  男,清华大学航天航空学院工程力学系教授,博士生导师。1932年出生于北京;1961年毕业于苏联列宁格勒工业大学物理-力学系,获得副博士(相当于西方国家Ph. D博士)学位。
    中国燃烧和多相流学术界的学术带头人之一,享受国务院特殊津贴。曾任清华大学煤的清洁燃烧国家重点实验室学术委员会副主任,中国工程热物理学会理事,中国力学学会多相流和非牛顿流专业组主任。国际多相流会议常设核心组中国代表.
    现任国际燃烧学会会员,、多相流和燃烧方面多种国际会议的国际学术委员,《国际清洁能源技术学报》、《国际计算多相流学报》、《燃烧科学与技术》(中国)编委。
    曾先后担任美国多所大学的访问教授,先后在美国、加拿大、德国、日本以及中国香港地区、台湾地区进行合作研究和讲学60多次,担任国内多所大学的兼职教授。
    主要研究领域为多相流、湍流和燃烧。研究成果得到国内外公认,已出版中英文学术专著7部,在国内外期刊上发表学术论文300余篇。SCI收录、EI收录、SCI他引均在数百篇以上。获得2007年国家自然科学二等奖、1995年国家教委科技进步一等奖、1995年电力部科技进步一等奖、1995年光华科技一等奖、1992年全国优秀电力科技图书一等奖和多项省部级科技成果二等奖。

  • 多相湍流反应与湍动燃烧的扛鼎之作。
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  • Preface i Nomenclature iii Introduction v 

    1. Some Fundamentals of Dispersed Multiphase Flows 1 

    1.1  Particle/Spray Basic Properties 1 

    1.1.1  Particle/Droplet Size and Its Distribution 1 

    1.1.2  Apparent Density and Volume Fraction 2 

    1.2  Particle Drag, Heat, and Mass Transfer 2 

    1.3  Single-Particle Dynamics 3 

    1.3.1 

    1.3.2 

    1.3.3 

    1.3.4 

    1.3.5 

    1.3.6 

    References 

    Single-Particle Motion Equation 3 Motion of a Single Particle in a Uniform Flow Field 4 Particle Gravitational Deposition 4 Forces Acting on Particles in Nonuniform Flow Field 5 

    1.3.4.1  Magnus Force 5 

    1.3.4.2 Saffman Force  5 

    1.3.4.3  Particle Thermophoresis, Electrophoresis, and Photophoresis 5 Generalized...

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