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Asymptotic investigation of heat transfer and skin friction in three-dimensional hypersonic rarefied gas flows

机译:三维高超声速稀薄气流中传热和皮肤摩擦的渐近研究

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摘要

The three-dimensional hypersonic rarefied gas flow over blunt bodies is investigated in a transitional (from the free molecule to the continuum) flow regime. The problem is solved within the framework of the asymptotically correct thin viscous shock layer model by an asymptotic method developed for low Reynolds numbers. Simple analytical expressions are obtained for the Stanton number and the coefficients of skin friction and pressure on the windward surface of the body as a function of its geometrical characteristics and the free stream parameters. These solutions are represented in an invariant form that is independent of the choice of the system of coordinates. The limits of applicability of the asimptotic solution are estimated. It is shown that, when the Reynolds number tends to zero, the solutions for the Stanton number and the coefficients of skin friction and pressure approach to the values in the free molecule flow regime at unit accommodation coefficient. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在过渡(从自由分子到连续体)流动状态下研究了在钝体上的三维高超音速稀薄气体流动。通过为低雷诺数开发的渐近方法,在渐近正确的薄粘性激波层模型的框架内解决了该问题。根据斯坦顿数以及人体上风表面的皮肤摩擦系数和压力系数,可以根据其几何特性和自由流参数获得简单的分析表达式。这些解决方案以不依赖于坐标系选择的不变形式表示。估计了渐近解的适用范围。结果表明,当雷诺数趋于零时,斯坦顿数的解以及皮肤摩擦系数和压力系数接近于单位适应系数下自由分子流动态的值。 (C)2016 Elsevier Ltd.保留所有权利。

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