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171.
172.
In this study, the lock-in phenomenon of Tip Clearance Flow(TCF) instabilities and their relationship to blade vibration are investigated numerically on an axial transonic rotor with a large tip clearance. The capabilities of simulating instability flow and lock-in phenomenon are verified on a transonic rotor and a NACA0012 airfoil by comparing with the test data, respectively.The lock-in phenomenon is first numerically confirmed that may occur to TCF instabilities when its frequency is close to... 相似文献
173.
《中国航空学报》2024,37(11):168-187
The aeroelastic stability associated with the acoustic wave propagation characteristics of transonic rotor blades was numerically investigated in this study.The influence of the vibration fre-quency on the aerodynamic damping of the first bending mode was primarily considered at different speeds,including both work and stall points.We found that the state of acoustic wave propagation associated with aeroelastic instability is closely related to rotational speed.At low speeds near stall points,the risk of aeroelastic instability is confined to the upstream cut-off state.However,at high speeds near stall points,aeroelastic instability may occur in both the downstream cut-off state and the acoustic wave propagation state of the upstream cut-off frequency,further expanding the range of the acoustic wave propagation state in which aeroelastic instability can arise.The research find-ings show that for suction surfaces,aerodynamic work is affected not only by acoustic wave prop-agation characteristics,but also by shock waves,radial flow,and reflux in the flow field.However,for pressure surfaces,the acoustic wave propagation characteristics play a significant role.When aeroelastic instability occurs,negative damping predominantly arises from the pressure surface.To investigate why lower-order modes are more prone to aeroelastic instability,specific simulations were conducted for the first bending and twisting modes under different operating conditions in the downstream cut-on state.When the vibration frequency significantly exceeds the downstream cut-off frequency,the blade phase is minimally influenced by acoustic wave propagation characteristics,and the rotor is aeroelastically stable in these phases.Simultaneously,there is an approximately linear increase in the unsteady pressure amplitude with increasing vibration frequency,and the aerodynamic work is predominantly influenced by the unsteady pressure amplitude. 相似文献
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175.
Inner Attitude Integration Algorithm Based on Fault Detection for Strapdown Inertial Attitude and Heading Reference System 总被引:1,自引:0,他引:1
This article proposes a new inner attitude integration algorithm to improve attitude accuracy of the strapdown inertial attitude and heading reference system(SIAHRS), which, by means of a Kalman filter, integrates the calculated attitude from the accelerometers in inertial measuring unit(IMU), called damping attitudes, with those from the conventional IMU. As vehicle's acceleration could produce damping attitude errors, the horizontal outputs from accelerometers are firstly used to judge the vehicle's motion so as to determine whether the damping attitudes could be reasonably applied. This article also analyzes the limitation of this approach. Furthermore, it suggests a residual chi-square test to judge the validity of damping attitude measurement in real time, and accordingly puts forward proper information fusion strategy. Finally, the effectiveness of the proposed algorithm is proved through the experiments on a real system in dynamic and static states. 相似文献
176.
本文通过对现有沉浮模态各种近似解析解的分析比较,修正了经典解析法完全略去△a自由度的假设,计及了对此模态有相当影响的气动导数Cma和Cmq的作用,导出了沉浮模态二阶近似方程。算例结果证实,本方法具有较高精度,优于现有的几种近似解析解。 相似文献
177.
178.
179.
弹性环式挤压油膜阻尼器设计因素研究 总被引:3,自引:0,他引:3
本文研究了一种新型挤压油膜阻尼器——弹性环式挤压油脱阻尼器(ERSFD)以改善传统挤压油膜阻尼器(SFD)的油膜力特性。通过对ERSFD数学物理模型的求解,研宄了ERSFD油膜力特性,研究表明弹性环的变形能够从动地改善偏心率。从而有效改善刚度非线性。另外,本文也研究了影响油膜力特性的结构参数,为适合于工程应用的ERSFD结构设计奠定了基础。 相似文献
180.
带摩擦阻尼装置系统振动响应分析方法研究 总被引:4,自引:4,他引:4
引入整体-局部一体化滑动模型,提出了带摩擦阻尼装置平板叶片的振动响应分析方法,通过与实验结果对比,验证了分析方法的有效性;定义了无量纲正压力,通过不同无量纲正压力下平板叶片的振动响应分析,获得了振动响应与无量纲正压力的关系曲线。计算结果表明:在局部滑动阶段摩擦阻尼对系统振动的抑制仍然有明显的效果,因此在摩擦阻尼减振分析中,引入局部滑动模型具有重要意义,并可通过无量纲正压力对阻尼器的参数进行优化,使系统在共振时的响应达到最小。 相似文献