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Grand Challenge of CIP towards Universal Solver from Nano-Scale to Astrophysical Scale

机译:从纳米规模到天体物理规模的纳米型举办普遍求解器的大挑战

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We review some recent progress of the CIP method that is known as a general numerical solver for solid, liquid, gas and plasmas. This method is a kind of semi-Lagrangian scheme and has been extended to treat incompressible flow in the framework of compressible fluid. Since it uses primitive Euler representation, it is suitable for multi-phase analysis. This method was also applied to the magnetohydrodynamic equation in astrophysical jet formation and to the Shroedinger equation. In the Shroedinger equation, the CIP achieved the accuracy by a few orders of magnitude higher than the conventional schemes. This method is recently extended to almost mesh-free system that is called "soroban grid" that ensures the third order accuracy both in time and space with the help of the CIP method.
机译:我们审查了CIP方法的一些进展,称为用于固体,液体,气体和等离子体的一般数值求解器。该方法是一种半拉格朗日方案,已经扩展到治疗可压缩液框架中的不可压缩流动。由于它使用原始欧拉表示,它适用于多相分析。该方法还应用于天体物理喷射形成的磁性动力学方程和脉络员方程。在Shroedinger方程中,CIP通过比传统方案高出几个数量级的准确性。此方法最近延伸到几乎网格的系统,称为“Soroban网格”,可在CIP方法的帮助下确保时间和空间中的第三顺序精度。

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