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Titlebook: Computational and Experimental Fluid Mechanics with Applications to Physics, Engineering and the Env; Leonardo Di G. Sigalotti,Jaime Klapp

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書(shū)目名稱Computational and Experimental Fluid Mechanics with Applications to Physics, Engineering and the Env
編輯Leonardo Di G. Sigalotti,Jaime Klapp,Eloy Sira
視頻videohttp://file.papertrans.cn/234/233237/233237.mp4
概述Recent advances in various areas of fundamental and applied fluid mechanics are collected in papers written in a clear and concise manner and avoiding cumbersome mathematical calculation.Most technica
叢書(shū)名稱Environmental Science and Engineering
圖書(shū)封面Titlebook: Computational and Experimental Fluid Mechanics with Applications to Physics, Engineering and the Env;  Leonardo Di G. Sigalotti,Jaime Klapp
描述The book presents a collection of selected papers from the I Workshop of the Venezuelan Society of Fluid Mechanics held on Margarita Island, Venezuela from November 4 to 9, 2012. Written by experts in their respective fields, the contributions are organized into five parts: - Part I Invited Lectures, consisting of full-length technical papers on both computational and experimental fluid mechanics covering a wide range of topics from drops to multiphase and granular flows to astrophysical flows, - Part II Drops, Particles and Waves - Part III Multiphase and Multicomponent Flows - Part IV Atmospheric and Granular Flows - and Part V Turbulent and Astrophysical Flows. The book is intended for upper-level undergraduate and graduate students as well as for physicists, chemists and engineers teaching and working in the field of fluid mechanics and its applications. The contributions are the result of recent advances in theoretical and experimental research in fluid mechanics, encompassing both fundamentals as well as applications to fluid engineering design, including pipelines, turbines, flow separators, hydraulic systems and biological fluid elements, and to granular, environmental and
出版日期Book 2014
關(guān)鍵詞Computational Fluid Dynamics; Experimental Fluid Mechanics; Fluid Dynamics; Fluid Engineering; Venezuela
版次1
doihttps://doi.org/10.1007/978-3-319-00191-3
isbn_softcover978-3-319-34366-2
isbn_ebook978-3-319-00191-3Series ISSN 1863-5520 Series E-ISSN 1863-5539
issn_series 1863-5520
copyrightSpringer International Publishing Switzerland 2014
The information of publication is updating

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https://doi.org/10.1007/978-3-0348-7512-7emperature helium gas. The low temperature environment offers two advantages toward the study of turbulent convection; namely the favorable properties of the working fluid in achieving very high Rayleigh numbers and the low thermal mass of the heated metallic surfaces at cryogenic temperatures. The
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https://doi.org/10.1007/3-7643-7575-2y focus on the computational modelling of fluid-mediated processes related to cancer dynamics, spanning different representation scales from cells to organs. Fluid mechanics seems to act as a fundamental organizing principle in many aspects of cancer, including its growth, progression, metastasis, a
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Multi-Oriented Symplectic Geometryid is studied numerically and experimentally. By using the Boundary Element Method, numerical solutions of the Stokes equations for the viscous liquid yield the evolution of the surface of a bubble. These solutions and experiments show that cylindrical, conical, and pipe walls with periodic corrugat
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Lagrangian Manifolds and Quantizationranular materials. We then outline some approaches towards a thermodynamics for granular materials. We analyze the grain flow as a fluid mechanical phenomenon, with a brief introduction to the kinetic theory of inelastically colliding hard particles. We present a nonlinear theory of elasticity for g
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Intersection Indices in Lag(,) and Sp(,)goes in parallel with the understanding of jet turbulence. It has been speculated that different kinds of vortex interactions in the near field, can produce sound. Also, that the interaction between the flow and the shock structure produces noise. It is now known that noise, in supersonic and subson
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