化学工程研究生必读经典之一:传递现象 (Transport phenomena)
【问题】茫茫书海, 该如何读书呢?
【答案】读经典。
闲话不说,推荐在化学工程传递现象方面必读的2本经典书籍。
Transport Phenomena (2 ed)by R. Byron Bird
Hardcover: 920 pages
Publisher: Wiley; 2 edition (December 11, 2006)
Language: English
ISBN-10: 0470115394
ISBN-13: 978-0470115398
Product Dimensions: 10.3 x 8 x 1.4 inches
这本书就不用多说了,第一版自60年代来就一直是这个方面绝对的经典, 目前有中文版但还是推荐读原版。这是第二版,介绍如下(From Wiley):
The market leading transport phenomena text has been revised! Authors, Bird, Stewart and Lightfoot have revised Transport Phenomena to include deeper and more extensive coverage of heat transfer, enlarged discussion of dimensional analysis, a new chapter on flow of polymers, systematic discussions of convective momentum, energy, and mass transport, and transport in two-phase systems.
Analysis of Transport Phenomena by William M. Deen
Hardcover: 624 pages
Publisher: Oxford University Press, USA (March 12, 1998)
Language: English
ISBN-10: 0195084942
ISBN-13: 978-0195084948
Product Dimensions: 9.3 x 6.5 x 1.3 inches
这本书可能大家还不是很熟悉, 但我认为这是目前最好的研究生教材了(很多美国名校都用它)。作者来自MIT, 读完后才知道大牛们是如何理解这些传统知识并利用到新领域的研究中去的。如果说第一本是60年代的经典, 那么这本书就是90年代的经典。书中的习题一定得做,那是真正的精华所在。我记得我学完这本书以后再看传递方面的文献, 那感觉就一个字形容,“爽”。强烈推荐!
以下是本书的介绍(From Amazon):
An ideal text for graduate level courses in transport phenomena for chemical engineers, Analysis of Transport Phenomena provides a unified treatment of momentum, heat, and mass transfer, emphasizing the concepts and analytical techniques that apply to all of these transport processes. The first few chapters establish the tools needed for later analyses while also covering heat and mass transfer in stationary media. The similarities among the molecular or diffusive transport mechanisms--heat conduction, diffusion of chemical species, and viscous transfer of momentum--are
highlighted. Conservation equations for scalar quantites are derived first in general form, and then used to obtain the governing equations for total mass, energy, and chemical species. The scaling and order-of-magnitude concepts which are crucial in modeling are also introduced. Certain key methods for solving the differential equations in transport problems, including similarity, perturbation, and finite Fourier transform techniques, are described using conduction and diffusion problems as examples. Following chapters are devoted to fluid mechanics, beginning with fundamental equations for momentum transfer and then discussing unidirectional flow, nearly unidirectional (lubrication) flow, creeping flow, and laminar boundary layer flow. Forced-convection heat and mass transfer in laminar flow, multicomponent energy and mass transfer, free convection, and turbulence are also covered. The appendix summarizes vector and tensor operations and relations involving various coordinate systems. Based on twenty years of teaching and extensive class testing, Analysis of Transport Phenomena offers students both extensive coverage of the topic and inclusion of modern examples from bioengineering, membrane science, and materials processing. It is mathematically self-contained and is also unique in its treatment of scaling and approximation techniques and its presentation of the finite Fourier transform method for solving partial differential equations.
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