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961.
基于共轴对转封闭差动轮系的扭转动力学集中参数模型,求解了系统的固有频率和振型.理论分析了频率对刚度和质量的参数灵敏度,及频率变化轨迹中的模态跃迁现象.分析结果表明:根据振动特征可将系统振型分为扭转振动模式、行星轮振动模式和星轮振动模式,分别对应于系统的单根、L(行星轮数)-1和N(星轮数)-1重根频率;行星轮的个数对重...  相似文献   
962.
为满足发动机适航规章CCAR33.27对涡轮失去负载时转子完整性的设计要求,研究涡轮失去负载瞬间转速随时间变化规律.采用多点稳态法对动力涡轮超转瞬时气动效率与转速对应关系进行研究,在此基础上,假设动力涡轮进口燃气能量不变,进而分析动力涡轮扭矩与转速的变化关系.然后采用理论力学和工程分析相结合的方法建立了动力涡轮失去负载...  相似文献   
963.
付维亮  杜玉锋  孙恩博  高杰  郑群 《推进技术》2021,42(6):1276-1284
为了降低大子午扩张涡轮端区二次流损失和流动损失,同时降低过渡段缩短对涡轮性能的影响,对具有大子午扩张低压涡轮过渡段的紧凑过渡段设计进行气动分析,设计的紧凑型过渡段径向长度减小了30%,分析涡轮带原始过渡段和缩短后的紧凑型过渡段的气动性能和流场状态.并对涡轮静叶采用正交化设计,初步探索正交化设计对大子午扩张涡轮紧凑过渡段...  相似文献   
964.
本文综述了跨介质航行器入水问题的研究进展,特别关注了入水流固耦合特性、弹性体结构入水冲击以及高速入水现象。入水过程涉及复杂的流体动力学现象,包括空泡形成、冲击载荷以及与航行体动力学特性的相互作用,这些因素都对航行器的设计和性能产生重大影响。本文讨论了跨介质航行器的基本概念,其具有独特的战略应用价值。入水过程中的关键挑战包括处理巨大的冲击载荷和复杂的流体动力学特性,这要求对航行器的形状、入水速度和入水姿态进行精密控制以优化性能。针对不同形状的航行体如何影响冲击响应和空泡动态,详细介绍了通过高速摄影和传感器技术在不同条件下进行的入水试验,这些试验帮助研究学者观察并分析了入水过程中的空泡形成、流体喷射以及随后的空泡闭合等现象。随着计算技术的进步,人们开始使用仿真技术研究多相流动和航行体结构的相互作用。总之,跨介质航行器的入水研究是一个多学科交叉的研究。通过深入理解入水过程中的物理现象和力学响应,可以为未来航行器的设计和操作提供科学依据,推动海空一体化航行器技术的发展。  相似文献   
965.
In this paper, we consider the double-satellite localization under the earth ellipsoid model of the Wideband Geodetic System(WGS-84) using the Time Difference of Arrival(TDOA)and the Angle-of-Arrival(AOA).Several closed-form solution algorithms via the pseudolinearization of the measurement equations are presented to efficiently estimate the location.These algorithms include the Weighted Least Squares(WLS), the Constrained Total Least Squares(CTLS), and the Taylor-Series Iteration(TSI).Performance comparison of the proposed methods with the Cramér-Rao Lower Bound(CRLB) in the simulation is shown to demonstrate that the proposed algorithms are feasible and have stable performance.  相似文献   
966.
This article deals with the disturbance attenuation control of aircraft flying through wind shear via Linear Parameter Varying(LPV) modeling and control method. A Flight Dynamics Model(FDM) with wind shear effects considered was established in wind coordinate system. An LPV FDM was built up based on function substitution whose decomposing function was optimized by Genetic Algorithm(GA). The wind disturbance was explicitly included in the system matrix of LPV FDM. Taking wind disturbance as external uncertainties, robust LPV control method with the LPV FDM was put forward. Based on ride quality and flight safety requirements in wind disturbance, longitudinal and lateral output feedback robust LPV controllers were designed respectively,in which the scheduling flight states in LPV model were actually dependent parameters in LPV control. The results indicate that LPV FDM can reflect the instantaneous dynamics of nonlinear system especially at the boundary of aerodynamic envelope. Furthermore, the LPV FDM also can approach nonlinear FDM's response in wind disturbance special flight. Compared with a parameter-invariant LQR controller designed with a small-disturbance FDM, the LPV controllers show preferable robustness and stability for disturbance attenuation.  相似文献   
967.
良好的机组配合可以有效提高飞行的安全性。首先通过国外军用直升机发生的一些典型事故,分析了不良机组配合的具体表现,然后指出机组配合对于军用直升机的重要性。最后,借鉴国内外的有效经验,对机组如何进行良好配合并提高安全性提出了一些建议。  相似文献   
968.
Electrohydrostatic actuator (EHA) is a type of power-by-wire actuator that is widely implemented in the aerospace industry for flight control, landing gears, thrust reversers, thrust vector control, and space robots. This paper presents the development and evaluation of position-based impedance control (PBIC) for an EHA. Impedance control provides the actuator with compliance and facilitates the interaction with the environment. Most impedance control applications utilize electrical or valve-controlled hydraulic actuators, whereas this work realizes impedance control via a compact and efficient EHA. The structures of the EHA and PBIC are firstly introduced. A mathematical model of the actuation system is established, and values of its coefficients are identified by particle swarm optimization. This model facilitates the development of a position controller and the selection of target impedance parameters. A nonlinear proportional-integral position controller is developed for the EHA to achieve the accurate positioning requirement of PBIC. The controller compensates for the adverse effect of stiction, and a position accuracy of 0.08 mm is attained. Various experimental results are presented to verify the applicability of PBIC to the EHA. The compliance of the actuator is demonstrated in an impact test.  相似文献   
969.
Graphene nanosheets(GNSs) strengthened AgCuTi composite filler(AgCuTi_G) was used to braze C/C composite and Ti-6Al-4V. The effects of GNSs on the wettability of AgCuTi_G filler on the C/C composite surface and the interfacial microstructure and mechanical properties of brazed joints were investigated. The results indicate that the addition of GNSs reduced the wettability of AgCuTi_G. The interfacial microstructure of brazed joints evolved with the addition of GNSs, where Ti_3Cu_4 and TiCu_4 were converted to TiCu and the thickness of the reaction layer adjacent to the base material decreased. The maximum shear strength of joints brazed at 0.3 wt% GNSs was 23.3 MPa(880℃/10 min). Further adding GNSs deteriorated the shear strength of the joints. Fracture of the joints occurred in the C/C composite substrate and the TiC layer adjacent to C/C composite.  相似文献   
970.
Background noise is inevitable when sensor arrays are used for aeroacoustic measurements in wind tunnels. The direct removal of background noise, however, would affect the measurement accuracy. In particular, the existing array signal processing algorithms are either invalid or inefficient for removing the noise that is coherent with the signal of interest. In this paper, an intelligent algorithm is developed to localize the coherent sound sources and background noise in real time by iteratively checking the collected data from the array. The proposed method can automatically adjust the suboptimal fading factor to extract useful information as much as possible in residual sequence. This algorithm is tested in simulations and then demonstrated in an experiment.Compared to the two existing methods, the results indicate that the new method has a good phase-shift tracking ability and rapid estimation-error convergence speed, and can achieve an acceptable performance even for low-cost acoustic sensors. Overall, the proposed method should assist array beamforming and hence benefit aeroacoustic measurement.  相似文献   
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