aeroelasticity

aeroelasticity

1. Investigation of two aeroelasticity problems in transonic flow

两种跨声速气动弹性问题分析研究

2. However, this new structure also leads to some problems in strength and aeroelasticity, so some analytical results and suggestions are presented.

但是这种新型的结构也带来了强度、气弹稳定性等问题,对此给出了一些分析结果和建议。

3. Keyword: aeroelasticity;

关 键 词: 气动弹性;

4. Introduction to Aircraft Aeroelasticity and Dynamic Loads

动力载荷飞行气动弹性力学导论

5. Keywords turbomachinery;fluid-structure interaction;fluid-induced vibration;aeroelasticity;numerical simulation;

叶轮机械;流固耦合;流体激振;气动弹性;数值计算;

6. Application of Regress Analysis Method to Aeroelasticity Research

回归分析方法在气动弹性研究中的应用

7. Airfoil flutter is one of the important problems in aeroelasticity.

在气动弹性力学中,机翼振颤是一个非常典型的问题。

8. NUMERICAL METHOD OF AEROELASTICITY BASED ON LOCAL PISTON THEORY

基于当流活塞理论的气动弹性计算方法研究

9. Design Method of Active Control Law Based on Reduced Order Model of Unsteady Aerodynamics for Aeroelasticity

基于非定常气动力低阶模型的气动弹性主动控制律设计

10. Numerical Simulation of Aeroelasticity Basing on Indentification Technology of Unsteady Aerodynamic Loads

基于非定常气动力辨识技术的气动弹性数值模拟

11. Discussion on Aeroelasticity of Large Aspect-ratio Wing

大展弦比机翼的气动弹性问题探讨

12. By the aeroelasticity theory and method, structure model with FEM, model correction, natural vibration calculation, flutter analysis were made.

应用气动弹性分析理论和方法,对复合材料大展弦比机翼进行了结构有限元建模、模型修正、固有振动特性计算、部件颤振工程分析。

13. INVESTIGATIONS OF CHARACTERISTICS OF STATIC AEROELASTICITY FOR ELASTIC WING IN TRANSONIC FLOW

弹性机翼跨音速静气动弹性问题研究

14. The main difficulty on the study of aeroelasticity lies in the effects of unsteady separation, shock and viscosity to the stall flutter.

振荡叶栅的非定常分 离、粘性效应和跨音激波对失速颤振的影响成为当前气动弹性力学的 主要难点。

15. By the aeroelasticity theory and method,structure model with FEM,model correction,natural vibration calculation,flutter analysis were made.

新一代航空结构广泛采用复合材料,对复合材料机翼的气动弹性工程化建模和分析是飞机设计的重要任务。

16. Based on numerical approaches, the present study focuses mainly on two sections, one is aeroelasticity of bridge, the other is aerodynamic characteristics of bridges and vehicles in crosswind.

本文借助数值方法所作的研究概括为二个方面,一是桥梁气动弹性; 二是横风中车辆、桥梁的气动特性。

17. Keywords aeroelasticity;flutter;CFD;local piston theory;ROM;

气动弹性;颤振;CFD;当地流活塞理论;ROM;

18. aeroelasticity tailoring

气动弹性剪裁

19. Investigation of the Aeroelasticity Problem and it's Parallel Computing

气动弹性及并行化求解研究

20. Aeroelasticity Matters: Some reflections on Two Decades of Testing in the NASA Lanley Transonic Dynamics wind Tunnel.

气动弹性问题:nasa兰利跨声速动力学风洞20年试验的几点思考。

21. thermo aeroelasticity

热弹性

22. Realizing data exchange to reflect coupling between fluid and structures is essential to solving static aeroelasticity problems.

研究静气动弹性问题一大关键是要解决流固数据耦合。

23. Coupled with the structural equations, the models for transonic aeroelasticity in state-space are got.

耦合结构动力学方程,建立了基于状态空间的跨声速气动弹性分析模型。

24. An Analysis of Structure Response for Transonic Static Aeroelasticity

跨声速静气动弹性结构响应分析

25. Using above methods to solve unsteady pressure distribution, coupling structure equations, the supersonic or hypersonic aeroelasticity is simulated in time-domain.

运用上述的非定常气动力求解方法,耦合结构动力学方程,实现超音速、高超音速气动弹性的模拟。

26. With the increasing speed and performance of a aircraft, especially the modern transonic and supersonic airplanes burst into use, aeroelasticity has become more important than before.

随着飞机速度和性能和不断提高,尤其是现代跨声速飞机大量投入使用,气动弹性问题愈来愈突出。

27. static aeroelasticity

静气动弹性

28. non-linear aeroelasticity

非线性气功弹性

29. nonlinear aeroelasticity

非线性气动弹性

30. First,it is the analysis of mechanism that we must do according to the linked aeroelasticity andsome of the other forms in the stall flutter and relations among them.

首先,根据相关的气动弹性力学理论对驰振的诱发机理进行分析,同时也简要介绍了失速颤振中的其它几种常见形式以及同驰振的联系。

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