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MHD Equilibrium and Kink Stability in Damavand Tokamak

机译:Damavand Tokamak的MHD平衡和纽结稳定性

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摘要

Magnetohydrodynamic (MHD) equilibrium is vulnerable to numerous destabilizing mechanisms. Instabilities introduce distortions to the plasma magnetic surfaces and its boundaries, their driving force being the radial gradient of plasma toroidal current density. For certain modal numbers, internal kink modes may develop, and their study is feasible according to the energy principle, in which the change in total potential energy due to the disturbance is evaluated. In this article, we present a totally new analysis of MHD equilibrium and stability, and apply it to Damavand tokamak which has a large aspect ratio. For this purpose, we combine perturbation and Green's function methods to solve for the equilibrium configuration. At this stage, plasma profiles are found explicitly in terms of Bessel functions, and we present a simple expression for estimation of total toroidal plasma current. Then the rest of plasma profiles, including poloidal magnetic flux, safety factor, and toroidal current density, are obtained and plotted. In the next step, we turn to the stability calculations and show that Damavand plasma is resistant to most of the disturbances.
机译:磁流体动力学(MHD)平衡易受多种不稳定机制的影响。不稳定性将变形引入等离子磁性表面及其边界,其驱动力是等离子环形电流密度的径向梯度。对于某些模态数,可能会发展内部扭结模式,并且根据能量原理对其进行研究是可行的,其中评估了由于扰动引起的总势能的变化。在本文中,我们对MHD的平衡和稳定性进行了全新的分析,并将其应用于纵横比较大的Damavand托卡马克。为此,我们将摄动和格林函数方法结合起来求解平衡构型。在此阶段,根据贝塞尔函数明确找到了等离子体轮廓,并且我们提出了一个简单的表达式来估算总环形等离子体电流。然后,获取并绘制其余的血浆分布图,包括极性磁通量,安全系数和环形电流密度。在下一步中,我们转向稳定性计算,并表明达马万德等离子体可抵抗大多数干扰。

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