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Plasma boundary identification in HL-2A by means of the finite current element method

机译:HL-2A等离子体边界的有限电流识别

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摘要

In this paper, the finite current element (FCE) method used in HL-2A is described. The calculation and test results show that the error of the reconstructed boundary given by the FCE method (< 3mm) is smaller than that obtained by the current filament method used before (< 6mm). Even if some current elements are located out of the plasma boundary, the FCE method can also identify the plasma boundary successfully. If the location of the finite current elements is changed in a certain area, the error of the reconstructed boundary is always very small. By employing a conventional PC (Pentium 4 2.4GHz), the calculation time of one set of plasma discharge parameters does not exceed 1ms. Thus, the FCE method can identify the diverted plasma configuration quickly and accurately. This is essential and important for real-time shape control in HL-2A.
机译:本文介绍了HL-2A中使用的有限电流元件(FCE)方法。计算和测试结果表明,通过FCE方法给出的重建边界的误差(<3mm)比以前使用的当前灯丝方法获得的误差(<6mm)要小。即使某些电流元素位于等离子体边界之外,FCE方法也可以成功识别等离子体边界。如果有限电流元件的位置在某个区域内发生变化,则重建边界的误差将始终很小。通过使用常规PC(奔腾4 2.4GHz),一组等离子体放电参数的计算时间不超过1ms。因此,FCE方法可以快速,准确地识别转移的等离子体构型。这对于HL-2A中的实时形状控制至关重要,也很重要。

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