论文标题
寻找数据驱动的符号多流体10摩托模型闭合
In Search of a Data Driven Symbolic Multi-Fluid 10-Moment Model Closure
论文作者
论文摘要
将动力学效应纳入流体模型一直是磁重新连接和等离子体物理学的长期问题。通常,压力张量还原为标量,该标量是用于帮助建模大规模全局系统(例如地球磁层)的近似值。不幸的是,这省略了重要的动力学物理学,这些动力学物理学在无碰撞方案中起着至关重要的作用。另一只手上的多流体10矩模型保留了完整的对称压力张量。通过将Vlasov方程的矩达到二阶,包括标量密度,矢量散装流量和对称压力张量,以总共10个单独的组件来构建10摩托模型。使用多流体10矩模型需要闭合,以截断方程式的级联系统。在这里,我们希望利用数据驱动的方法来寻求封闭,从而可以改善无碰撞制度中10矩多流体模型的物理保真度。具体而言,我们使用非线性动力学(SINDY)方法的稀疏识别进行符号方程发现,以从完全动力学粒子中的模拟数据中寻求截断的闭合,该数据本质上保留了相关的动力学物理学。我们通过从PIC粒子数据中重现10摩托模型来验证我们的方法,并使用该方法生成闭合截断10摩托模型的闭合模型,该模型通过重新连接的非线性阶段进行了分析。
The inclusion of kinetic effects into fluid models has been a long standing problem in magnetic reconnection and plasma physics. Generally the pressure tensor is reduced to a scalar which is an approximation used to aid in the modeling of large scale global systems such as the Earth's magnetosphere. This unfortunately omits important kinetic physics which have been shown to play a crucial role in collisionless regimes. The multi-fluid 10-moment model on the other-hand retains the full symmetric pressure tensor. The 10-moment model is constructed by taking moments of the Vlasov equation up to second order, and includes the scalar density, the vector bulk-flow, and the symmetric pressure tensor for a total of 10 separate components. Use of the multi-fluid 10-moment model requires a closure which truncates the cascading system of equations. Here we look to leverage data-driven methodologies to seek a closure which may improve physical fidelity of the 10-moment multi-fluid model in collisionless regimes. Specifically we use the Sparse Identification of Nonlinear Dynamics (SINDy) method for symbolic equation discovery to seek the truncating closure from fully kinetic particle-in-cell simulation data, which inherently retains the relevant kinetic physics. We verify our method by reproducing the 10-moment model from the PIC particle data and use the method to generate a closure truncating the 10-moment model which is analyzed through the nonlinear phase of reconnection.