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Numerical Simulation of The Aerodynamics and Aerothermal Heating for A Hypersonic Vehicle

机译:高超声速车辆空气动力学和空气热量的数值模拟

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A hypersonic forebody based on waverider and liftbody concept was presented. The configuration of a new hypersonic vehicle was designed by taking the configuration of X43A. Numerical simulation was conducted on the two-dimensional and three-dimensional models of the vehicle using CFD software of Gambit and Fluent. The effects of Mach number and attack angle on the aerodynamics and heat transfer were considered. The results of simulation investigation showed that: High compressed air was constrained beneath the pre-compressed surface of the forebody. The computational data on central cross section of the three-dimensional model for the vehicle was similar to that of the two-dimensional model. But great pressure gradient existed between the precompressed surface and side surface of the forebody which would lead to severe air leakage and pressure loss. The increasing of attack angle and Mach number enforced the stagnation of shock wave on the side walls of the engine. The thermal environment of the vehicle was deteriorated rapidly with increasing Mach number. But the viscous heating was overrated which lead to unbelievable high temperature. The software Fluent was more suitable to predict the aerodynamics than the heat transfer for hypersonic flow.
机译:提出了基于Waverider和Liftbody概念的超声波前体。通过采用X43a的配置来设计新的超音速车辆的配置。使用Gambit软件和流利的CFD软件对车辆的二维和三维模型进行数值模拟。考虑了马赫数和攻击角对空气动力学和传热的影响。仿真研究结果表明:高压空气受到前置的预压缩表面下方的约束。车辆三维模型的中央横截面的计算数据类似于二维模型的计算数据。但是,前面的前压力表面和侧表面之间存在大的压力梯度,这将导致严重的漏气和压力损失。攻击角和马赫数的增加在发动机侧壁上强制了冲击波的停滞。车辆的热环境随着马赫数的增加而迅速劣化。但粘性加热量被高估,导致令人难以置信的高温。软件流畅的更适合于预测空气动力学而不是过度流动的传热。

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