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首页> 外文期刊>Journal of Plasma Physics >Reflection and transmission at the boundary between two counterstreaming MHD plasmas - active boundaries or negative-energy waves?
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Reflection and transmission at the boundary between two counterstreaming MHD plasmas - active boundaries or negative-energy waves?

机译:在两个逆流MHD等离子体之间的边界处反射和透射-有源边界还是负能量波?

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A magnetohydrodynamic (MHD) wave, incident on the boundary between two MHD media in relative motion, may be amplified or attenuated by exchanging energy with the kinetic energy of the background flow. The conventional treatment of this problem uses a definition of the wave energy such that energy is conserved at the boundary. An amplified reflected wave then leads to the requirement of a transmitted wave carrying negative energy. Such an approach, while producing correct results, obscures the nature and location of the energy interchange. In this paper, the proper definitions of energy density and flux in a moving plasma are discussed, and the relationship of the group velocity and the energy flow is clarified. The mechanism by which energy is exchanged between streaming plasma and wave is through the work done by the Maxwell and Reynolds stresses on the gradient of velocity at the boundary. The location of the energy exchange is identified as the active boundary, with no need to invoke ideas of negative energy. The relationship between the two approaches is critically discussed. [References: 7]
机译:可以通过与背景流的动能交换能量来放大或衰减入射在两个MHD介质之间的相对运动的边界上的磁流体动力学(MHD)波。对该问题的常规处理使用波能的定义,使得能量在边界处被守恒。然后,放大的反射波导致要求传输波携带负能量。这种方法虽然产生正确的结果,却掩盖了能量交换的性质和位置。本文讨论了运动等离子体中能量密度和通量的正确定义,并阐明了群速度与能量流之间的关系。流动的等离子体和波之间进行能量交换的机制是通过麦克斯韦和雷诺(Reynolds)在边界速度梯度上所做的工作完成的。能量交换的位置被标识为活动边界,无需引用负能量的想法。严格讨论了这两种方法之间的关系。 [参考:7]

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