This paper contributes new insights into discretizing Coulomb collisions in kinetic plasma models. Building on the previous works [Carrillo et al. J. Comp. Phys. X 7:100066 (2020), Hirvijoki and Burby Phys. Plasmas 27(8):082307 (2020)], I propose deterministic discrete-time energy- and positivity-preserving, entropy-dissipating marker-particle schemes for the standard Landau collision operator and the electrostatic gyrokinetic Landau operator. In case of the standard Landau operator, the scheme preserves also the discrete-time kinetic momentum. The improvements, the extensions of the structure-preserving discretizations in [Carrillo et al. J. Comp. Phys. X 7:100066 (2020), Hirvijoki and Burby Phys. Plasmas 27(8):082307 (2020)] to discrete time, are made possible by exploiting the underlying metriplectic structure of the collision operators involved and the so-called discrete-gradient integrators.
翻译:本文对动力等离散的电流模型中的库伦碰撞提出了新的见解。根据以前的工作[Carrilo 等人J.Comp. Phys. X 7:100066(2020年)、Hirvijoki和Burby Phys. Plasmas 27(8):082307(202020年)],我提议为标准的Landau碰撞操作员和电压陀螺仪操作员提出确定离散的离散离散离散时间能量和感动标记粒子计划。在标准Landau操作员的情况下,该装置还保留离散时间动能动力动力。改进、结构保持离散离散离散离散状态的延伸[Carillo和J. J.Comp. Phys. X 7:100066(202020年)、Hirvijoki和Burby Phys. Plasmas 27(8):082307 (202020年) 离散时间,这是通过利用所涉碰撞操作员和所谓的离散地成形成形成体的离心结构而得以实现的。