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Parametric Study of Cantilever Plates Exposed to Supersonic and Hypersonic Flows

机译:暴露于超音速和超音速流动的悬臂板的参数研究

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Analysis of hypersonic flows associated with re-entry vehicles has gained a lot of significance due to the advancements in Aerospace Engineering. An area that is studied extensively by researchers is the simultaneous reduction aerodynamic drag and aero heating in re-entry vehicles. Out of the many strategies being studied, the use of aerospikes at the stagnation point of the vehicle is found to give favourable results. The structural stability of the aerospike becomes important as it is exposed to very high pressures and temperatures. Keeping this in view, the deflection and vibration of an inclined cantilever plate in hypersonic flow is carried out using ANSYS. Steady state pressure distribution obtained from Fluent is applied as load to the transient structural module for analysis. After due validation of the methods, the effects of parameters like flow Mach number, plate inclination and plate thickness on the deflection and vibration are studied.
机译:由于航空航天工程的进步,与重新进入车辆相关的超声波流量的分析具有很大的意义。 由研究人员进行广泛研究的区域是再进入车辆的同时减少空气动力学阻力和航空加热。 出于所研究的许多策略中,发现在车辆停滞点处使用Aerospikes来提供有利的结果。 由于暴露于非常高的压力和温度,气动气旋的结构稳定性变得重要。 保持这种情况下,使用ANSYS进行超声波流动中倾斜悬臂板的偏转和振动。 从流利的稳态压力分布作为负载施加到瞬态结构模块以进行分析。 在适当验证的方法之后,研究了参数等流动马赫数,板倾斜和板厚度在偏转和振动上的影响。

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