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Laminar and turbulent flow solutions with radiation and ablation injection for Jovian entry

机译:带辐射和消融注入的层流和湍流解决方案,使木星进入

摘要

Laminar and turbulent flow-field solutions with coupled carbon-phenolic mass injection are presented for the forebody of a probe entering a nominal Jupiter atmosphere. Solutions are obtained for a 35-degree hyperboloid and for a 45-degree spherically blunted cone using a time-dependent, finite-difference method. The radiative heating rates for the coupled laminar flow are significantly reduced as compared to the corresponding no-blowing case; however, for the coupled turbulent flow, it is found that the surface radiative heating rates are substantially increased and often exceed the corresponding no-blowing values. Turbulence is found to have no effect on the surface radiative heating rates for the no-blowing solutions. The present results are compared with the other available solutions, and some additional solutions are presented.
机译:介绍了进入标称木星大气的探头的前体,以及耦合的碳-酚质量注入的层流和湍流场解决方案。使用时间相关的有限差分方法获得35度双曲面和45度球形钝锥的解。与相应的不吹气情况相比,耦合层流的辐射加热速率显着降低。然而,对于耦合的湍流,发现表面辐射加热速率显着提高并且经常超过相应的无鼓风值。对于不吹气的溶液,发现湍流对表面辐射加热速率没有影响。将当前结果与其他可用解决方案进行比较,并提供一些其他解决方案。

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    Kumar A.; Tiwari S. N.;

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  • 年度 1980
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