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Linearized model collision operators for multiple ion species plasmas and gyrokinetic entropy balance equations

机译:多个离子物种等离子体的线性化模型碰撞算子和旋回动力学平衡方程

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摘要

Linearized model collision operators for multiple ion species plasmas are presented that conserve particles, momentum, and energy and satisfy adjointness relations and Boltzmann’s H-theorem even for collisions between different particle species with unequal temperatures. The model collisionoperators are also written in the gyrophase-averaged form that can be applied to the gyrokinetic equation. Balance equations for the turbulent entropy density, the energy of electromagnetic fluctuations, the turbulent transport fluxes of particle and heat, and the collisional dissipation are derived from the gyrokinetic equation including the collision term and Maxwell equations. It isshown that, in the steady turbulence, the entropy produced by the turbulent transport fluxes is dissipated in part by collisions in the nonzonal-mode region and in part by those in the zonal-mode region after the nonlinear entropy transfer from nonzonal to zonal modes
机译:提出了用于多种离子物种等离子体的线性化模型碰撞算子,即使在温度不等的不同粒子物种之间发生碰撞,该算子也能节省粒子,动量和能量,并满足伴随关系和玻耳兹曼H定理。模型碰撞算子也以可用于陀螺动力学方程的平均陀螺相位形式编写。湍流熵密度,电磁涨落的能量,颗粒和热的湍流输运通量以及碰撞耗散的平衡方程式是从包括碰撞项和麦克斯韦方程式在内的旋转动力学方程式导出的。结果表明,在稳态湍流中,由湍流输运通量产生的熵在非线性熵从非区域模式转变为区域模式后,一部分被非区域模式区域的碰撞消散,部分被区域模式区域的碰撞消散。

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