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Titlebook: Convection in Porous Media; Donald A. Nield,Adrian Bejan Book 19921st edition Springer-Verlag New York 1992 convection.energy.environment.

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發(fā)表于 2025-3-21 16:11:44 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Convection in Porous Media
編輯Donald A. Nield,Adrian Bejan
視頻videohttp://file.papertrans.cn/238/237711/237711.mp4
圖書封面Titlebook: Convection in Porous Media;  Donald A. Nield,Adrian Bejan Book 19921st edition Springer-Verlag New York 1992 convection.energy.environment.
描述In this book we have tried to provide a user-friendly introduction to the topic of convection in porous media. We have assumed that the reader is conversant with the basic elements of fluid mechanics and heat transfer, but otherwise the book is self-contained. Only routine classical mathematics is employed. We hope that the book will be useful both as a review (for reference) and as a tutorial work (suitable as a textbook in a graduate course or seminar). This book brings into perspective the voluminous research that has been performed during the last two decades. The field has recently exploded because of worldwide concern with issues such as energy self-sufficiency and pollution of the environment. Areas of application include the insulation of buildings and equipment, energy storage and recovery, geothermal reservoirs, nuclear waste disposal, chemical reactor engineering, and the storage of heat-generating materials such as grain and coal. Geophysical applications range from the flow of groundwater around hot intrusions to the stability of snow against avalanches.
出版日期Book 19921st edition
關(guān)鍵詞convection; energy; environment; fluid mechanics; heat transfer; nuclear; pollution; porous media; fluid- an
版次1
doihttps://doi.org/10.1007/978-1-4757-2175-1
isbn_ebook978-1-4757-2175-1
copyrightSpringer-Verlag New York 1992
The information of publication is updating

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R. R. Van der Ploeg,F. Beese,P. Beneckeusual situation) or it undergoes small deformation. The interconnectedness of the void (the pores) allows the flow of one or more fluids through the material. In the simplest situation (“single-phase flow”) the void is saturated by a single fluid. In “two-phase flow” a liquid and a gas share the voi
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https://doi.org/10.1007/978-94-011-5957-9erence. In nature, many saturated porous media interact thermally with one another, and with solid surfaces that confine them or are embedded in them. In this chapter we analyze the basic heat transfer question by looking only at . situations, in which the fluid flow is caused (forced) by an externa
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R. R. Van der Ploeg,F. Beese,P. Beneckeortant. For small values of the Rayleigh number ., perturbation methods are appropriate. At large values of . thermal boundary layers are formed, and boundary layer theory is the obvious method of investigation. This approach forms the subject of much of this chapter. We follow to a large extent the
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N. Klearchou,J. Bontis,S. Mantalenakis, industrial cold-storage installations, and cryogenics. As in the earlier chapters, we begin with the most fundamental aspects of the convection heat transfer process when the flow is steady and in the Darcy regime. Later, we examine the special features of flows that deviate from the Darcy regime,
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Voluntary Termination of Pregnancyreview paper by Lai, Prasad, and Kulacki (1991). We start with a treatment of boundary layer flow on heated plane walls inclined at some nonzero angle to the horizontal. This configuration is illustrated in Fig. 8.1. The boundary layer equations [compare Eqs. (5.5) and (5.6)] for steady flow are .,
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