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Titlebook: Mathematical and Computational Aspects; C. A. Brebbia,W. L. Wendland,G. Kuhn Conference proceedings 1987 Springer-Verlag Berlin Heidelberg

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楼主: Corrugate
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A Generalized Approach to Transfer the Domain Integrals onto Boundary Ones for Potential Problems ine BEM requires only the discretization of the boundary rather than the domain. However, this feature is generally lost when the source or some non-linear terms are present in the governing differential equations. Domain integral terms exist in the formulation of BEM in these cases. A similar problem
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New Integral Equation Formulations for Continuum Mechanicsthe so-called domain type numerical methods (1). In the boundary element method, the derivation of boundary integral equation for the problems is indispensable subject. Usually the boundary integral equation formulation has been obtained from the weighted residual expression of the fundamental diffe
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Analyses of Infinite Reservoir Using the Boundary Element Method with Particular Integralsncy-independent fundamental solutions are used in the analyses which include the effect of water compressibility..One of the major difficulties in infinite reservoir analysis is the assessment of the effect of radiation damping. This difficulty is solved in this paper by modeling the near field and
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Experimental Convergence of Boundary Element Methods for the Capacity of the Electrified Square Platgle layer kernel) on an open surface г in ℝ.. In (Ervin, et al..) this integral equation, which determines the charge density of an electrified plate .is derived from the exterior Dirichlet problem of the Laplacian in ℝ.г. Existence and uniqueness for the solution of the integral equation are establ
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On Quadrature Methods and Spline Approximation of Singular Integral Equationses spline approximations for the unknown solutions. The most popular numerical procedures are collocation and Galerkin methods as well as quadrature methods. For collocation and Galerkin procedures, the corresponding mathematical foundation and error analysis in Sobolev spaces has been developed onl
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Accuracy and Efficiency of a Panel Method for Free Surface Flow Problems in Three Dimensionstisfies the Laplace equation.throughout the fluid domain Ω. The motion of the free surface waves is described by the dynamic and the kinematic free surface boundary conditions. These boundary conditions are the nonlinear, time-dependent partial differential equations.where η is the free surface elev
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