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首页> 外文期刊>Physics of plasmas >Nonlinear three-dimensional verification of the SPECYL and PIXIE3D magnetohydrodynamics codes for fusion plasmas
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Nonlinear three-dimensional verification of the SPECYL and PIXIE3D magnetohydrodynamics codes for fusion plasmas

机译:用于融合等离子体的SPECYL和PIXIE3D磁流体动力学代码的非线性三维验证

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摘要

With the increasing impact of scientific discovery via advanced computation, there is presently a strong emphasis on ensuring the mathematical correctness of computational simulation tools. Such endeavor, termed verification, is now at the center of most serious code development efforts. In this study, we address a cross-benchmark nonlinear verification study between two three-dimensional magnetohydrodynamics (3D MHD) codes for fluid modeling of fusion plasmas, SPECYL [S. Cappello and D. Biskamp, Nucl. Fusion 36, 571 (1996)] and PIXIE3D [L. Chacón, Phys. Plasmas 15, 056103 (2008)], in their common limit of application: the simple viscoresistive cylindrical approximation. SPECYL is a serial code in cylindrical geometry that features a spectral formulation in space and a semi-implicit temporal advance, and has been used extensively to date for reversed-field pinch studies. PIXIE3D is a massively parallel code in arbitrary curvilinear geometry that features a conservative, solenoidal finite-volume discretization in space, and a fully implicit temporal advance. The present study is, in our view, a first mandatory step in assessing the potential of any numerical 3D MHD code for fluid modeling of fusion plasmas. Excellent agreement is demonstrated over a wide range of parameters for several fusion-relevant cases in both two- and three-dimensional geometries.
机译:随着通过高级计算进行科学发现的影响越来越大,目前非常强调确保计算仿真工具的数学正确性。现在,这种称为验证的工作成为最认真的代码开发工作的中心。在这项研究中,我们针对两个三维磁流体动力学(3D MHD)代码对融合等离子体SPECYL的流体建模进行了跨基准的非线性验证研究。卡佩罗(Cappello)和D. Fusion 36,571(1996)]和PIXIE3D [L. Chacón,物理学。 Plasmas 15,056103(2008)],在其共同的应用范围内:简单的粘弹性圆柱近似。 SPECYL是圆柱几何图形的序列代码,具有空间频谱公式和半隐式时间提前的特征,迄今为止已广泛用于反向场收缩研究。 PIXIE3D是具有任意曲线几何体的大规模并行代码,具有空间保守的螺线管有限体积离散和完全隐含的时间提前的特征。我们认为,本研究是评估任何数字3D MHD代码对融合等离子体进行流体建模的潜力的第一步。在二维和三维几何中,对于几种与融合相关的情况,在广泛的参数范围内都表现出极好的一致性。

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