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首页> 外文期刊>Journal of Computational Physics >Mass, momentum and energy conserving (MaMEC) discretizations on general grids for the compressible Euler and shallow water equations
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Mass, momentum and energy conserving (MaMEC) discretizations on general grids for the compressible Euler and shallow water equations

机译:可压缩的欧拉方程和浅水方程在一般网格上的质量,动量和能量守恒(MaMEC)离散

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The paper explains a method by which discretizations of the continuity and momentum equations can be designed, such that they can be combined with an equation of state into a discrete energy equation. The resulting 'MaMEC' discretizations conserve mass, momentum as well as energy, although no explicit conservation law for the total energy is present. Essential ingredients are (i) discrete convection that leaves the discrete energy invariant, and (ii) discrete consistency between the thermodynamic terms. Of particular relevance is the way in which finite volume fluxes are related to nodal values. The method is an extension of existing methods based on skew-symmetry of discrete operators, because it allows arbitrary equations of state and a larger class of grids than earlier methods.The method is first illustrated with a one-dimensional example on a highly stretched staggered grid, in which the MaMEC method calculates qualitatively correct results and a non-skew-symmetric finite volume method becomes unstable. A further example is a two-dimensional shallow water calculation on a rectilinear grid as well as on an unstructured grid. The conservation of mass, momentum and energy is checked, and losses are found negligible up to machine accuracy.
机译:本文介绍了一种方法,通过该方法可以设计连续性和动量方程的离散化,从而可以将它们与状态方程组合为离散的能量方程。尽管没有明确的总能量守恒定律,但由此产生的“ MaMEC”离散保留了质量,动量以及能量。基本成分是(i)离散对流,使离散能量不变,以及(ii)热力学项之间的离散一致性。特别相关的是有限体积通量与节点值相关的方式。该方法是基于离散算子的偏对称性的现有方法的扩展,因为与早期方法相比,它允许状态方程和更大的网格类别。该方法首先在高度拉伸的交错结构上以一维示例进行说明网格,其中MaMEC方法计算定性正确的结果,并且非斜对称有限体积方法变得不稳定。另一个示例是在直线网格以及非结构化网格上进行二维浅水计算。检查质量,动量和能量的守恒,发现损失直至机器精度可以忽略不计。

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