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首页> 外文期刊>Physics of plasmas >Derivation via free energy conservation constraints of gyrofluid equations with finite-gyroradius electromagnetic nonlinearities
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Derivation via free energy conservation constraints of gyrofluid equations with finite-gyroradius electromagnetic nonlinearities

机译:通过自由能量守恒约束推导具有有限陀螺半径电磁非线性的陀螺流体方程

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The derivation of electromagnetic gyrofluid equations is made systematic by using the Hermite polynomial form of the underlying delta- f gyrokinetic distribution function. The gyrokinetic free-energy functional is explicitly used to set up the model. The gyrofluid free energy follows directly. The interaction term in the gyrokinetic Lagrangian is used to obtain the gyrofluid counterpart, from which the polarization equation follows. One closure rule is decided for taking moments over the kinetic gyroaveraging operator. These steps fix the rest of the derivation of the conservative part of the gyrofluid equations. Dissipation is then added in a form to obtain positive definite dissipation and to obtain the collisional fluid equations in their appropriate limit. Existing results are recovered, with the addition of a completely consistent model for finite gyroradius effects in the nonlinearities responsible for magnetic reconnection.
机译:电磁陀螺流体方程的推导是通过使用基础三角陀螺动力学分布函数的Hermite多项式形式来进行的。明确使用了回旋自由能功能来建立模型。旋流自由能直接跟随。旋转动力学的拉格朗日方程中的相互作用项用于获得旋流对应物,从中可以得出极化方程。确定了一条闭合规则,以便在动能陀螺平均算符上花一些时间。这些步骤固定了陀螺流体方程的保守部分的其余推导。然后以某种形式添加耗散以获得正的确定耗散并在适当的限制范围内获得碰撞流体方程。恢复了现有结果,并添加了一个完全一致的模型,该模型在负责磁重新连接的非线性中具有有限的陀螺半径效应。

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