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An axisymmetric unstructured finite volume method applied to the numerical modeling of an atmospheric pressure gas discharge

机译:轴对称非结构有限体积法在常压气体排放数值模拟中的应用

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摘要

We develop a finite volume method based on unstructured triangular and/or quadrangular meshes for the numerical modeling of gas discharges at atmospheric pressure. The discretization of the computational domain is performed with median-dual control-volumes. Gradient calculations at the faces of the control-volumes are based on finite-element interpolation using shape functions. An FCT method was chosen for the species transport integration. The accuracy of the numerical scheme is verified for different types of mesh-elements in a plane-to-plane DBD geometry. We present comparisons with literature results based on the immersed boundary method in a point-to-plane geometry and investigate the need of a high-order scheme for an accurate model of a filamentary discharge. Finally, we apply our scheme in a study of a discharge between two hemispherical electrodes covered with dielectrics, while focusing on sufficient spatial resolution in the vicinity of the dielectric surface. (C) 2014 Elsevier Inc. All rights reserved.
机译:我们开发了基于非结构化三角形和/或四边形网格的有限体积方法,用于大气压力下气体排放的数值模拟。计算域的离散化是通过中位数对偶控制量执行的。控制体积面上的梯度计算基于使用形状函数的有限元插值。选择一种FCT方法进行物种迁移整合。对于平面到平面DBD几何中的不同类型的网格元素,验证了数值方案的准确性。我们提出与基于点对面几何结构中的浸入边界方法的文献结果进行比较,并研究对用于丝状放电的精确模型的高阶方案的需求。最后,我们将我们的方案应用于研究覆盖有电介质的两个半球形电极之间的放电,同时关注电介质表面附近的足够空间分辨率。 (C)2014 Elsevier Inc.保留所有权利。

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