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Fourth order transport model on Yin-Yang grid by multi-moment constrained finite volume scheme

机译:多时刻约束有限卷方案中尹阳网格的四排运输模型

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A fourth order transport model is proposed for global computation with the application of multi-moment constrained finite volume (MCV) scheme and Yin-Yang. overset grid. Using multi-moment concept, local degrees of freedom (DOFs) are point-wisely defined within each mesh element to build a cubic spatial reconstruction. The updating formulations for local DOFs are derived by adopting multi moments as constraint conditions, including volume-integrated average (VIA), point value (PV) and first order derivative value (DV). Using Yin-Yang grid eliminates the polar singularities and results in a quasi-uniform mesh over the whole globe. Each component of Yin-Yang grid is a part of the LAT-LON grid, an orthogonal structured grid, where the MCV formulations designed for Cartesian grid can be applied straightforwardly to develop the high order numerical schemes. Proposed MCV model is checked by widely used benchmark tests. The numerical results show that the present model has fourth order accuracy and is competitive to most existing ones.
机译:提出了第四阶传输模型,用于全局计算,其应用多时刻约束有限体积(MCV)方案和尹阳。推销网格。使用多矩概念,在每个网格元素内被点明智地定义局部自由度(DOF)以构建立方空间重建。通过将多矩作为约束条件采用多矩,包括体积集成的平均(通孔),点值(PV)和第一阶数衍生值(DV)来导出局部DOF的更新制剂。使用阴阳网格消除了极地奇点,并导致全球对准均匀的网格。 Yin-Yang Grid的每个部件是LAT-LON网格的一部分,一个正交结构电网,其中设计用于笛卡尔栅格的MCV配方,可以直接地应用以开发高阶数值方案。通过广泛使用的基准测试来检查提出的MCV模型。数值结果表明,本模型具有第四顺序准确性,对大多数现有的准确性具有竞争力。

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