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Viscous Shock-Layer Analysis of Two-Dimensional and Axisymmetric Flows

机译:二维和轴对称流动的粘性冲击层分析

摘要

Results are obtained for cylindrical leading edges of proposed transatmospheric vehicles by employing a two-dimensional viscous shock-layer code for nonequilibrium gas flows. The accuracy and efficiency of the planar code is verified through detailed comparisons with other predictions. This study includes results for 6-deg half-angle bodies with nose radii ranging from 0.01 to 2.0 ft for both cylindrically blunted wedges and spherically blunted cones (included for comparison). Some results are presented as a ratio of the noncatalytic to the corresponding fully catalytic heating value to illustrate the maximum potential for a heating reduction in dissociated nonequilibrium flows. Generally, this ratio and the individual heating rates are smaller for cylindrically blunted wedges with small nose radii as compared to the spherically blunted cones (for the same nose radius). Therefore, a larger potential exists for heating reduction in cylindrically blunted as compared with the spherically blunted surfaces. However, the results presented at higher altitudes (where the slip effects become important) show that the spherically, blunted nose gives lower stagnation-point heating due to stronger merged shock-layer effects as compared with a cylindrically blunted nose.
机译:对于非平衡气流,采用二维粘性激波层代码,可以得出建议的跨大气层车辆的圆柱前缘的结果。通过与其他预测的详细比较来验证平面代码的准确性和效率。这项研究包括6度半角体的结果,其鼻钝半径为0.01到2.0 ft(包括圆柱钝化的楔形体和球形钝化的圆锥体)(用于比较)。一些结果以非催化与相应的完全催化热值之比表示,以说明解离的非平衡流中最大的加热还原潜力。通常,与球形钝锥相比(对于相同的鼻部半径),具有较小鼻半径的圆柱形钝楔的该比率和单独的加热速率较小。因此,与球形钝面相比,在圆柱形钝面中存在更大的减少热量的潜力。但是,在较高的高度(滑移效应变得很重要)上显示的结果表明,与圆柱形钝头相比,球形钝头具有更强的合并减震层效应,因此停滞点发热更低。

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