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首页> 外文期刊>Journal of Computational Physics >Toward efficient and accurate interface capturing on arbitrary hybrid unstructured grids: The THINC method with quadratic surface representation and Gaussian quadrature
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Toward efficient and accurate interface capturing on arbitrary hybrid unstructured grids: The THINC method with quadratic surface representation and Gaussian quadrature

机译:在任意混合非结构化网格上捕获高效和准确的界面:具有二次表面表示和高斯正交的神奇方法

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摘要

Abstract A novel interface capturing scheme is proposed to compute moving interface on arbitrary hybrid unstructured grids. Different from conventional volume of fluid (VOF) schemes that require complicated geometric manipulations for interface reconstructions, the present method can be viewed as a hybrid geometric/algebraic type VOF approach, i.e. the interface is implictly retrieved from an algebraic function that effectively makes use of the geometrical information, such as normal direction and curvature of the interface. Unlike previous versions of the THINC (tangent of hyperbola interface capturing) method, the interface is represented by a quadratic surface for grid cells of arbitrary shapes in this scheme. The Gaussian quadrature is used to estimate the integration of the cell-wise multi-dimensional hyperbolic tangent reconstruction function which is then used to retrieve the interface from the volume fraction value of the target cell. The Gaussian quadrature is also used to compute the numerical fluxes from the reconstruction function. Numerical accuracy for reconstruction and flux computation can be effectively improved by increasing quadrature points. The whole solution procedure follows the finite volume method for advection transport, and is thus simple and easy to use for cells of arbitrary shapes. As verified in the benchmark tests in this paper, the presented scheme, so-called THINC/QQ (THINC method with quadratic surface representation and Gaussian quadrature) scheme, shows significantly improved geometrical fidelity of interface representation particularly for curved surface. Despite algorithmic simplicity, the solution quality of THINC/QQ is comparable to other existing VOF methods with PLIC geometrical interface reconstructions, and thus an accurate and efficient VOF scheme of great practical significance for unstructured grids. Highlights ? A novel VOF (volume of fluid) scheme for arbitrary unstructured grids. ? Complete quadratic representation of curved interface. ? A straightforward and easy-to-use VOF scheme of great practical significance. ? Verified solution quality competitive to other existing methods. ]]>
机译:<![cdata [ Abstract 建议采用新颖的接口捕获方案来计算任意混合非结构网格上的移动接口。不同于需要用于接口重建的复杂几何操纵的传统体积的流体(VOF)方案,本方法可以被视为混合几何/代数型VOF方法,即,从有效利用的代数函数暗示接口地检索接口几何信息,例如界面的正常方向和曲率。与先前版本的Thinc(双曲线接口切换)方法不同,该接口由该方案中任意形状的网格单元的二次表面表示。高斯正交用于估计细胞 - 方面的多维双曲线切线改造功能的集成,然后用于从目标小区的体积分数值检索界面。高斯正交也用于计算来自重建功能的数值助量。通过增加正交点,可以有效地提高重建和磁通计数值准确度。整个解决方案手术遵循有限体积的平流传输方法,因此对于任意形状的细胞来说简单易用。如本文的基准测试中验证,所示的方案,所谓的Thinc / QQ(具有二次表面表示和高斯正交)方案,特别地提高了界面表示的几何保真度,特别是对于弯曲表面。尽管算法简单性,Cinc / QQ的溶液质量与具有PLIC几何接口重建的其他现有的VOF方法相当,因此是一种精确高效的VOF方案,对非结构化网格具有巨大实际意义的vof方案。 突出显示 任意非结构化网格的新型VOF(流体量)方案。 弯曲的完整二次标准表示界面。 直接且易于使用的vof方案具有实用意义的巨大实际意义。 验证的解决方案质量竞争其他竞争现有方法。 ]]>

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