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Titlebook: Boundary Element Techniques in Computer-Aided Engineering; C. A. Brebbia Book 1984 Martinus Nijhoff Publishers, Dordrecht 1984 Numerical i

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期刊全称Boundary Element Techniques in Computer-Aided Engineering
影响因子2023C. A. Brebbia
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学科分类NATO Science Series E:
图书封面Titlebook: Boundary Element Techniques in Computer-Aided Engineering;  C. A. Brebbia Book 1984 Martinus Nijhoff Publishers, Dordrecht 1984 Numerical i
影响因子This book constitutes the edited proceedings of the Advanced Studies Institute on Boundary Element Techniques in Computer Aided Engineering held at The Institute of Computational Mechanics, Ashurst Lodge, Southampton, England, from September 19 to 30, 1984. The Institute was held under the auspices of the newly launched "Double Jump Programme" which aims to bring together academics and industrial scientists. Consequently the programme was more industr­ ially based than other NATO ASI meetings, achieving an excellent combination of theoretical and practical aspects of the newly developed Boundary Element Method. In recent years engineers have become increasingly interested in the application of boundary element techniques for‘the solution of continuum mechanics problems. The importance of boundary elements is that it combines the advantages of boundary integral equations (i.e. reduction of dimensionality of the problems, possibility of modelling domains extending to infinity, numerical accura‘cy) with the versatility of finite elements (i.e. modelling of arbitrary curved surfaces). Because of this the technique has been well received by the engineering and scientific communities. An
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Scalar and Vector Potential Theory,ems. Physically speaking, it models the properties of continuous electrostatic charge distributions over closed conductors, so providing an easy entry into the theory. Thus, if charges are introduced on a smooth, closed, conducting surface ∂B, we posit a continuous charge density σ(.) at every . ⊂ ∂
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Potential Problems in Two Dimensions,imensions: . in rectangular Cartesian coordinates (x,y). We denote by D the relevant plane domain and by C its (internal or external) boundary or boundaries. When the domain D is multiply-connected, we denote its outer boundary by C..
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Heat Transfer Applications,ion. It is known from experience that heat flows from the hotter parts of a body to the cooler. The mechanisms responsible for this phenomena are conduction, radiation and convection. Since we are concerned in this paper exclusively with solid bodies, convection only intervenes through boundary cond
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Electrostatics Problems,as finite element, finite differences, etc. However the boundary element method has recently proven proven itself [1] an extremely powerful technique for the solution of this type of problem because it can easily and accurately model the singularities which commonly occur in this type of problem. Se
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A Boundary Element Solution of the Wave Equation,t necessary to solve a system of simultaneous equations. A computer code, BEREPOT, has been written to apply the method for any geometry. An example comparing results obtained using BEREPOT with an exact solution is given.
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Elasticity Problems,inearities exist, or when the problem is anisotropic, linear isotropic stress analysis is undertaken as a first approximation in order to save the time and effort which is required when theses non-linear properties are taken into account.
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Time Dependent Problems,published in the proceedings of the latest Boundary Element Conferences (C.A. Brebbia, 1981, 1982, 1983); while more definite work appeared as chapters in the Progress on Boundary Element Methods Series (C.A. Brebbia, 1981, 1983, 1984). The present chapter attempts to review some of the advances and
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