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Titlebook: Boundary Elements in Fluid Dynamics; C. A. Brebbia,P. W. Partridge Book 1992 Computational Mechanics Publications 1992 computational fluid

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發(fā)表于 2025-3-21 19:23:37 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Boundary Elements in Fluid Dynamics
影響因子2023C. A. Brebbia,P. W. Partridge
視頻videohttp://file.papertrans.cn/191/190012/190012.mp4
圖書封面Titlebook: Boundary Elements in Fluid Dynamics;  C. A. Brebbia,P. W. Partridge Book 1992 Computational Mechanics Publications 1992 computational fluid
影響因子This book Boundary Elements in Fluid Dynamics is the second volume of the two volume proceedings of the International Conference on Computer Modelling of Seas and Coastal Regions and Boundary Elements and Fluid Dynamics, held in Southampton, U.K., in April 1992. The Boundary Element Method (BEM) is now fully established as an ac- curate and successful technique for solving engineering problems in a wide range of fields. The success of the method is due to its advantages in data reduction, as only the boundary of the region is modelled. Thus moving boundaries may be more easily handled, which is not the case if domain methods are used. In addition, the method is easily able to model regions to extending to infinity. Fluid mechanics is traditionally one of the most challenging areas of engi- neering, the simulation of fluid motion, particularly in three dimensions, is always a serious test for any numerical method, and is an area in which BEM analysis may be used taking full advantage of its special characteris- tics. The conference includes sections on turbomachinery, aerodynamics, viscous flow and turbulence models, and special flow situations. The organisers would like to thank th
Pindex Book 1992
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https://doi.org/10.1007/b138241 possible modification to the original design has been looked at and an optimum design was selected. This method is found to be economical in this initial design and optimisation process, which will vastly reduce the amount of wind tunnel work and road-tests required.
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https://doi.org/10.1007/978-3-211-75794-9 averaged form of the Navier-Stokes equations is employed through the Reynolds decomposition of the instantaneous value of each variable. Turbulent stress terms are interpreted in the Boussinesq manner and Prandtl’s mixing length hypothesis is used. Only algebraic turbulent model is considered in this paper.
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The Boundary Element Solution of a Viscous Free Surface ProblemIn this paper we use the boundary element method to solve a very slow viscous flow with a free surface. An iterative scheme is developed and the numerical solutions are obtained for various non-dimensional fluid flow rates, q, and the non-dimensional surface tension, T.
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Computational Mechanics Publications 1992
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