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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >The finite volume method solution of the radiative transfer equation for photon transport in non-thermal gas discharges: application to the calculation of photoionization in streamer discharges
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The finite volume method solution of the radiative transfer equation for photon transport in non-thermal gas discharges: application to the calculation of photoionization in streamer discharges

机译:非热气体放电中光子传输的辐射传递方程的有限体积方法解:在流光放电中光电离计算中的应用

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This paper presents the development of a direct accurate numerical method to solve the monochromatic radiative transfer equation (RTE) based on a finite volume method (FVM) and its application to the simulation of streamer propagation. The validity of the developed model is demonstrated by performing direct comparisons with results obtained using the classic integral model. Comparisons with approximate solutions of the RTE (Eddington and SP3 models) are also carried out. Specific validation comparisons are presented for an artificial source of radiation with a Gaussian shape. The reported results demonstrate that whatever the value of the absorption coefficient, the results obtained using the direct FVM are in excellent agreement with the reference integral model with a significantly reduced computation time. When the absorption coefficient is high enough, the Eddington and SP3 methods are as accurate and become faster than the FVM. However, when the absorption coefficient decreases, approximate methods become less accurate and more computationally expensive than the FVM. Then the direct finite volume and the SP3 models have been applied to the calculation of photoionization in a double-headed streamer at ground pressure. For high values of the absorption coefficient, positive and negative streamers calculated using the SP3 model and the FVM for the photoionization source term are in excellent agreement. As the value of the absorption coefficient decreases, discrepancies between the results obtained with the finite volume and the SP3 models increase, and these differences increase as the streamers advance. For low values of the absorption coefficient, the use of the SP3 model overestimates the electron density and underestimates the photoionization source term in both streamers in comparison with the FVM. As a consequence, for low values of the absorption coefficient, positive and negative streamers calculated using the SP3 model for the photoionization source term propagate more slowly than those calculated using the FVM.
机译:本文提出了一种基于有限体积法(FVM)求解单色辐射传递方程(RTE)的直接精确数值方法的开发方法,并将其应用于流光传播模拟中。通过与使用经典积分模型获得的结果进行直接比较,可以证明所开发模型的有效性。还与RTE(Eddington和SP3模型)的近似解决方案进行了比较。提出了针对具有高斯形状的人工辐射源的特定验证比较。报告的结果表明,无论吸收系数的值如何,使用直接FVM获得的结果都与参考积分模型非常一致,并且计算时间大大减少。当吸收系数足够高时,Eddington和SP3方法同样准确,并且变得比FVM更快。但是,当吸收系数降低时,近似方法比FVM的准确性降低,并且在计算上更加昂贵。然后将直接有限体积和SP3模型应用于双头拖缆在地面压力下的光电离计算。对于高吸收系数值,使用SP3模型和FVM为光电离源项计算的正负离子流非常吻合。随着吸收系数值的减小,有限体积和SP3模型获得的结果之间的差异会增加,并且随着拖缆的前进,这些差异也会增加。对于低吸收系数值,与FVM相比,使用SP3模型高估了两个拖缆中的电子密度,而低估了光电离源项。结果,对于低吸收系数值,使用SP3模型为光电离源项计算的正负流比使用FVM计算的正负流传播得更慢。

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