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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >A dimensionally adaptive technique for computationally efficient cylindrical discrete ordinates radiation calculations
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A dimensionally adaptive technique for computationally efficient cylindrical discrete ordinates radiation calculations

机译:用于计算高效圆柱离散坐标辐射计算的尺寸自适应技术

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The use of high aspect ratio cylindrical pressure vessels and rotationally periodic burners in Pressurized Oxy-Coal (POC) furnaces leads to physical behavior that is 3D periodic near the burner, but which transitions to axisymmetric towards the outlet. A fully 3D model would consume unneeded resources, and an axisymmetric model would fail to capture periodic features of the near burner region, such as recirculation zones. The present work evaluates the ability of a dimensionally adaptive mesh (i.e., one that transitions from 3D to axisymmetric and 1D) to improve computational speed while still accurately calculating heat flux for such cylindrical systems. The Discrete Ordinates Method (DOM) was used to solve the cylindrical Radiative Transfer Equation (RTE) on both a dimensionally adaptive mesh and a fully 3D mesh. The effects of both spatial and angular refinement on speedup and agreement between the adaptive and fully 3D mesh were studied. For the four cylindrical combustor configurations studied, speedups ranged from 46.6% on a coarse adaptive mesh to 49.1% on a fine mesh. Increasing angular resolution decreased speedups from 48.0% at S-2 to 37.1% at S-8. Increasing angular resolution from S-2 to S-4 reduced the overall percent difference between adaptive and 3D meshes from 0.656% to 0.381%. Increasing angular resolution beyond S-4 did not significantly improve agreement between mesh types. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在加压氧煤(POC)炉中使用高纵横比圆柱形压力容器和旋转周期燃烧器导致燃烧器附近的3D周期性的物理行为,而是转变为轴对称朝向出口。完全3D模型将消耗不需要的资源,并且轴对称模型将无法捕获近燃烧器区域的周期特征,例如再循环区域。本工作评估了尺寸自适应网格(即,从3D转换到轴对称和1D)以提高计算速度的能力,同时仍然准确地计算这种圆柱形系统的热通量。离散坐标方法(DOM)用于在尺寸自适应网格和完全3D网格上求解圆柱辐射传输方程(RTE)。研究了空间和角度细化对自适应和完全3D网格之间的加速和协议的影响。对于研究的四个圆柱形燃烧器配置,加速在粗糙度的自适应网格上的46.6%范围为49.1%。增加角度分辨率在S-8的S-2至37.1%下降48.0%的加速度降低。从S-2到S-4增加角度分辨率降低了自适应和3D网格之间的总体百分比,从0.656%到0.381%。超出S-4以外的角度分辨率没有显着改善网格类型之间的一致性。 (c)2020 elestvier有限公司保留所有权利。

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