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Obstructed View Factor Calculations for Multiple Obstructions in Closed Cavities

机译:封闭腔中多种障碍物的障碍视图计数计算

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The inertial confinement fusion (ICF) program has been mainly concentrating on the indirect drive approach for the last three decades, due to relaxed requirements on driver-beam uniformity and reduced sensitivity to hydrodynamic instabilities. The optimal designs are important for maximum conversion of driving energy to X-rays, and finally, symmetrical irradiation of the capsule. The view factor (VF) evaluation is an important parameter providing significant radiation heat transport information in specific geometries. The present study is aimed at the VF calculations for closed cavities. The VF calculations include the case of energy transfer from one infinitesimal surface element of the enclosure to other similar infinitesimal surface elements of the cavity. Similarly, the obstructed VF is also calculated when multiple obstructions are present in the cavity. Two distinct computer programs are developed by programming in FORTRAN -90 to evaluate unobstructed VF and obstructed VF for a square geometry. The calculations are based on the crossed strings method, which is more reliable for simple geometries. The shadow effect method is used for the obstructed VF calculations. The results of the developed programs are benchmarked using the summation rule. In the case of no obstacles in the cavity, VF calculations solely obey the summation rule. However, in the presence of obstacles in the cavity, obstructed VF calculations showed the acceptable difference in comparison with the summation rule.
机译:由于对驾驶员束均匀性和对流体动力学稳定性的敏感性降低的要求,惯性监禁融合(ICF)计划主要集中在过去三十年中的间接驱动方法。最佳设计对于最大转换为X射线的驱动能量最大,并且最后,对称照射胶囊。视图因子(VF)评估是提供特定几何形状中的显着辐射热传输信息的重要参数。本研究旨在封闭腔的VF计算。 VF计算包括从外壳的一个无限的表面元件到腔的其他类似无限的表面元件的能量转移的情况。类似地,当存在在腔中存在多个障碍物时,还计算阻塞的VF。通过在Fortran -90中编程开发了两个不同的计算机程序,以评估不受阻碍的VF并阻塞VF的正方形几何。计算基于交叉的弦方法,对于简单的几何形状更可靠。影子效应方法用于阻塞的VF计算。开发计划的结果使用求和规则进行基准测试。在腔体内没有障碍物的情况下,VF计算仅仅遵守求和规则。然而,在腔中存在障碍物的情况下,与求和规则相比,阻塞的VF计算显示了可接受的差异。

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