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Thermal instability of a compressible finite-Larmor-radius Hall plasma in a porous medium

机译:多孔介质中可压缩有限Larmor-半径Hall等离子体的热不稳定性

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The thermal instability of a compressible plasma in a porous medium is considered in the presence of a uniform vertical magnetic field to include the Hall-current and finite-Larmor-radius effects. The system is found to be stable for (Cj,/g)fi < 1, where cp, β and g are the specific heat at constant-pressure, the uniform adverse temperature gradient and the acceleration due to gravity respectively. The uniform vertical magnetic field, Hall-current and finite-Larmor-raditis effects introduce oscillatory modes in the system for (cp/g)β > I, which were non-existent in their absence, The Hall current and finite. Larmor radius (FLR) individually have destabilizing and stabilizing effects respectively on'the system. In their simultaneous presence there is competition between the destabilizing role of the Hall current and the stabilizing role of the FLR, and each succeeds in stabilizing a certain wavenumber range. In the absence of a magnetic field (and hence the absence of an FLR and Hall current), the destabilizing effect of medium permeability is seen, but in the presence of a magnetic field (and hence the presence of an FLR and Hall current), the medium permeability may have a stabilizing or a destabilizing effect on the thermal instability of the plasma. The effect of compressibility is found to postpone the onset of thermal instability in plasma.
机译:在存在均匀垂直磁场的情况下,多孔介质中可压缩等离子体的热不稳定性被认为包括霍尔电流和有限拉莫尔半径效应。发现该系统对于(Cj,/ g)fi <1是稳定的,其中cp,β和g分别是恒压下的比热,均匀的不利温度梯度和重力加速度。均匀的垂直磁场,霍尔电流和有限Larmor辐射炎效应在系统中为(cp / g)β> I引入了振荡模式,在不存在霍尔模式电流和有限的情况下不存在这种振荡模式。拉莫尔半径(FLR)分别对系统产生不稳定和稳定作用。在它们同时存在的情况下,霍尔电流的稳定作用与FLR的稳定作用之间存在竞争,并且每个人都成功地稳定了一定的波数范围。在没有磁场(因此没有FLR和霍尔电流)的情况下,可以看到中等磁导率的不稳定作用,但是在有磁场(因此因此有FLR和霍尔电流的情况)下,介质渗透性对等离子体的热不稳定性可能具有稳定或不稳定的作用。发现可压缩性的影响推迟了血浆中热不稳定性的发作。

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