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Hybrid simulation of the Z-pinch instabilities for profiles generated during wire array implosion in the Saturn pulsed power generator

机译:土星脉冲式发电机线阵列内爆过程中产生的轮廓的Z捏捏不稳定性的混合仿真

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Experimental evidence suggests that the energy balance between processes in play during wire array implosions is not well understood. In fact the radiative yields can exceed by several times the implosion kinetic energy. A possible explanation is that the coupling from magnetic energy to kinetic energy as magnetohydrodynamic plasma instabilities develop provides additional energy. It is thus important to model the instabilities produced in the after implosion stage of the wire array in order to determine how the stored magnetic energy can be connected with the radiative yields. To this aim three-dimensional hybrid simulations have been performed. They are initialized with plasma radial density profiles, deduced in recent experiments [C. Deeney , Phys. Plasmas 6, 3576 (1999)] that exhibited large x-ray yields, together with the corresponding magnetic field profiles. Unlike previous work, these profiles do not satisfy pressure balance and differ substantially from those of a Bennett equilibrium. They result in faster growth with an associated transfer of magnetic energy to plasma motion and hence kinetic energy. (C) 2005 American Institute of Physics.
机译:实验证据表明,对线阵内爆过程中进行的过程之间的能量平衡了解不多。实际上,辐射屈服可能超过内爆动能的几倍。可能的解释是,随着磁流体动力学等离子体不稳定性的发展,从磁能到动能的耦合会提供额外的能量。因此,重要的是对线阵列内爆后阶段产生的不稳定性进行建模,以确定如何将存储的磁能与辐射屈服联系起来。为了这个目的,已经进行了三维混合仿真。用最近的实验推导的血浆径向密度分布对它们进行初始化[C.迪尼物理学[等离子6,3576(1999)]表现出较大的X射线产率,以及相应的磁场分布。与以前的工作不同,这些曲线不满足压力平衡,并且与Bennett平衡曲线大不相同。它们导致了更快的生长,并且伴随着将磁能转移到等离子运动,从而转移了动能。 (C)2005美国物理研究所。

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