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The Research on the Nonlinear Coupling Problems of Aerodynamics/Structure/Propulsion for Air-breathing Vehicle

机译:空气呼吸器空气动力/结构/推进非线性耦合问题的研究

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For the airframe/propulsion integrated characteristics of air-breathing vehicle, the influence of structure vibration is considered when we study the coupling of inflow-outflow and fluid-structure. The nonlinear problem on the fluid-structure coupling is the key issue. In order to reduce the computation cost, the proper orthogonal decomposition (POD) is used to simplify the analysis of flow field. The test examples of wing profile and air-breathing vehicle show that POD can reduce the computation orders, and the results are high accuracy. Besides, the coupled analysis of inflow and outflow based on one dimensional method is validated by experiments, which shows that the 1-D method can be used to the airframe/propulsion integrated analysis in the early design stage of air-breathing vehicle. Finally, the plate's nonlinear dynamics is studied under different dynamic pressures by POD and finite element method.
机译:对于空气呼吸飞行器的机身/推进系统综合特性,在研究进出流与流固耦合时,考虑了结构振动的影响。流固耦合的非线性问题是关键。为了降低计算成本,使用适当的正交分解(POD)简化了流场的分析。机翼轮廓和空气呼吸飞行器的测试实例表明,POD可以减少计算量,结果具有较高的准确性。此外,通过一维方法对流入和流出的耦合分析进行了实验验证,结果表明一维方法可用于呼吸机飞行器设计初期的机身/推进力综合分析。最后,通过POD和有限元方法研究了在不同动压力下板的非线性动力学。

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