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gyrokinetic Landau 碰撞算子的守恒形式。

Gyrokinetic Landau collision operator in conservative form.

机构信息

Plasma Science and Fusion Center, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

Phys Rev E. 2019 Feb;99(2-1):023201. doi: 10.1103/PhysRevE.99.023201.

DOI:10.1103/PhysRevE.99.023201
PMID:30934259
Abstract

A gyrokinetic linearized exact (not model) Landau collision operator is derived by transforming the symmetric and conservative Landau form. The formulation obtains the velocity-space flux density and preserves the operator's conservative form as the divergence of this flux density. The operator contains both test-particle and field-particle contributions, and finite Larmor radius effects are evaluated in either Bessel function series or gyrophase integrals. While equivalent to the gyrokinetic Fokker-Planck form with Rosenbluth potentials [B. Li and D. R. Ernst, Phys. Rev. Lett. 106, 195002 (2011)10.1103/PhysRevLett.106.195002], the gyrokinetic conservative Landau form explicitly preserves the symmetry between test-particle and field-particle contributions, which underlies the conservation laws and the H theorem, and enables discretization with a finite-volume or spectral method to preserve the conservation properties numerically, independent of resolution. The form of the exact linearized field-particle terms differs from those of widely used model operators. We show the finite Larmor radius corrections to the field-particle terms in the exact linearized operator involve Bessel functions of all orders, while present model field-particle terms involve only the first two Bessel functions. This new symmetric and conservative formulation enables the gyrokinetic exact linearized Landau operator to be implemented in gyrokinetic turbulence codes for comparison with present model operators using similar numerical methods.

摘要

通过对对称且保守的朗道形式进行变换,推导出了一种回旋动力学线性精确(非模型)朗道碰撞算子。该公式获得了速度空间通量密度,并通过该通量密度的散度来保留算子的保守形式。该算子包含测试粒子和场粒子的贡献,并且可以在贝塞尔函数级数或回旋相位积分中评估有限拉莫尔半径效应。虽然与具有罗森布鲁斯势的回旋动力学福克-普朗克形式等效[B. Li 和 D. R. Ernst, Phys. Rev. Lett. 106, 195002 (2011)10.1103/PhysRevLett.106.195002],但回旋动力学保守朗道形式明确保留了测试粒子和场粒子贡献之间的对称性,这是守恒定律和 H 定理的基础,并能够通过有限体积或谱方法进行离散化,以在数值上独立于分辨率来保留守恒性质。精确线性化场粒子项的形式与广泛使用的模型算子不同。我们表明,精确线性化算子中场粒子项的有限拉莫尔半径修正涉及所有阶数的贝塞尔函数,而现有的模型场粒子项仅涉及前两个贝塞尔函数。这种新的对称且保守的形式使回旋动力学精确线性化朗道算子能够在回旋动力学湍流代码中实现,以便与使用类似数值方法的现有模型算子进行比较。

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