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首页> 外文期刊>Plasma Science, IEEE Transactions on >Effects of Approximation and Close-Fitting Technique of Corona Model on Neon Soft X-Ray Emission in 3-kJ Plasma Focus
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Effects of Approximation and Close-Fitting Technique of Corona Model on Neon Soft X-Ray Emission in 3-kJ Plasma Focus

机译:电晕模型的逼近和紧密拟合技术对3 kJ等离子体焦点霓虹灯软X射线发射的影响

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In plasma focus (PF), the thermodynamic parameters such as ion fraction , effective ionic charge number , and effective specific heat ratio at different temperatures may be calculated by corona model (CM). In the Lee model code, the neon and are stored in subroutines using convenient tables and polynomials derived from the CM (we call this approach approximated CM). In this paper, the thermodynamic parameters of the CM are close fitted to the data, thus replacing the approximate CM data with a more accurate close-fitting CM (CFCM). The comparisons of the Lee model code using the approximated CM and CFCM subroutines are conducted, with the main emphasis on optimum neon soft X-ray (SXR) emission and their properties. The suitable focus pinch temperature window of 200–500 eV is applied to generate the optimum neon SXR yield (). The optimum neon is found to be 3.19 and 3.49 J at the optimum pressure torr with approximated CM and CFCM subroutines, respectively. A high optimum value of SXR yield is obtained using CFCM subroutines in the Lee model, which is nearer to the experimental value compared with the approximated CM subroutines. The use of CFCM in the Lee model contributes to better estimation for further numerical experiment studies and gives confidence that the model is sufficiently realis- ic in describing the PF dynamics and SXR emission.
机译:在等离子体聚焦(PF)中,可以通过电晕模型(CM)计算不同温度下的热力学参数,例如离子分数,有效离子电荷数和有效比热比。在Lee模型代码中,使用方便的表和从CM派生的多项式(我们将此方法称为CM)将氖和氖存储在子例程中。在本文中,CM的热力学参数与数据紧密匹配,因此用更精确的紧密拟合CM(CFCM)代替了近似CM数据。使用近似的CM和CFCM子例程对Lee模型代码进行了比较,主要侧重于最佳的霓虹软X射线(SXR)发射及其特性。应用合适的200-500 eV聚焦夹点温度窗口以产生最佳的霓虹灯SXR产量()。发现最佳氖在最佳压力torr下分别为近似CM和CFCM子例程,分别为3.19和3.49J。使用Lee模型中的CFCM子例程可以获得较高的SXR产量最佳值,与近似的CM子例程相比,该值更接近实验值。 Lee模型中CFCM的使用有助于更好地进行进一步的数值实验研究,并使该模型在描述PF动态和SXR排放方面具有足够的现实性。

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