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首页> 外文期刊>Physics of plasmas >Linearized model Fokker-Planck collision operators for gyrokinetic simulations. I. Theory
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Linearized model Fokker-Planck collision operators for gyrokinetic simulations. I. Theory

机译:用于动力学仿真的线性化模型Fokker-Planck碰撞算子。一,理论

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摘要

A new analytically and numerically manageable model collision operator is developed specifically for turbulence simulations. The like-particle collision operator includes both pitch-angle scattering and energy diffusion and satisfies the physical constraints required for collision operators: it conserves particles, momentum, and energy, obeys Boltzmann's H-theorem (collisions cannot decrease entropy), vanishes on a Maxwellian, and efficiently dissipates small-scale structure in the velocity space. The process of transforming this collision operator into the gyroaveraged form for use in gyrokinetic simulations is detailed. The gyroaveraged model operator is shown to have more suitable behavior at small scales in phase space than previously suggested models. Model operators for electron-ion and ion-electron collisions are also presented.
机译:专门为湍流模拟开发了一种新的分析和数值可管理的模型碰撞算子。相似粒子碰撞算子包括桨距角散射和能量扩散,并满足碰撞算子所需的物理约束:它保留粒子,动量和能量,服从Boltzmann的H定理(碰撞不能降低熵),在Maxwellian上消失,并有效地消散了速度空间中的小规模结构。详细介绍了将此碰撞算子转换为陀螺平均形式以用于陀螺动力学模拟的过程。与先前建议的模型相比,陀螺平均模型算子在相空间的小范围内具有更合适的行为。还介绍了电子-离子和离子-电子碰撞的模型算子。

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