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首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >Implementation of boundary conditions in the finite-volume pressure-based methodPart I: Segregated solvers
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Implementation of boundary conditions in the finite-volume pressure-based methodPart I: Segregated solvers

机译:基于有限体积压力法的边界条件的实现第一部分:隔离求解器

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The paper deals with the formulation of a variety of boundary conditions for incompressible and compressible flows in the context of the segregated pressure-based unstructured finite volume method. The focus is on the derivation and the implementation of these boundary conditions and their relation to the various physical boundaries and geometric constraints. While a variety of boundary conditions apply at any of the physical boundaries (inlets, outlets, and walls), geometric constraints define the type of boundary condition to be used. The emphasis is on relating the mathematical derivation of the boundary conditions to the algebraic equations defined at each centroid of the boundary elements and their coefficients. All derived boundary conditions are validated through a set of test cases with comparison of computed results to available numerical and/or experimental data.
机译:在基于分离压力的非结构有限体积方法的背景下,本文讨论了不可压缩和可压缩流动的各种边界条件的制定。重点是这些边界条件的推导和实现以及它们与各种物理边界和几何约束的关系。尽管各种边界条件都适用于任何物理边界(入口,出口和墙壁),但是几何约束定义了要使用的边界条件的类型。重点是将边界条件的数学推导与在边界元素及其系数的每个质心处定义的代数方程式相关联。所有导出的边界条件通过一组测试用例进行验证,并将计算结果与可用的数值和/或实验数据进行比较。

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