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首页> 外文期刊>Physics of plasmas >Effect of a noncircular plasma cross section on the ideal (1,1) mode in low-shear tokamaks
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Effect of a noncircular plasma cross section on the ideal (1,1) mode in low-shear tokamaks

机译:低剪切托卡马克中非圆形等离子体截面对理想(1,1)模式的影响

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The effect of a noncircular shape of the plasma cross section on the ideal magnetohydrodynamic (MHD) stability of the (m,n)=(1,1) internal kink, or quasi-interchange (QI), mode in toroidal plasmas, where the safety factor q is close to unity in a wide area in the plasma core, is analyzed. The analysis is based on previously derived perturbation expansions of the ideal MHD equations for the (1, 1) mode, in the inverse aspect ratio, and in the ellipticity and the triangularity of the plasma cross section. For equilibria having a parabolic pressure profile and a constant central q=q(0), with 0 < q(0)-1 1, a simple analytical formulation of the stability problem is obtained, and an expression for the eigenfunction in terms of a Bessel function is found. Furthermore, noncircularity of the cross section is found to induce a whole spectrum of (1, 1) ideal modes with eigenvalues approaching the continuum (omega/omega(A))(2)=(q(0)-1)(2)/3 as the number of nodes in the radial direction goes to infinity. The QI mode is the most unstable mode in this class. If the pressure is low and/or the radius of the low-shear region is small, noncircularity has a small and, usually, destabilizing effect on the QI mode, whereas in plasmas with high pressure and a large radius of the low-shear region, the combined effects of vertical elongation and positive triangularity lead to a substantial improvement of the stability of this mode compared with the situation in plasmas with circular cross section. (c) 2007 American Institute of Physics.
机译:等离子体横截面的非圆形形状对环形等离子体中(m,n)=(1,1)内部扭结或拟交换(QI)模式的理想磁流体动力学(MHD)稳定性的影响分析了等离子体核心中大面积区域的安全系数q接近于1。该分析基于先前推导的理想MHD方程的扰动展开式,用于(1,1)模式,纵横比成反比,以及等离子截面的椭圆率和三角形。对于具有抛物线压力分布和恒定中心q = q(0)且0

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