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31.
在理论力学教学中,平面运动刚体的转动与基点无关的证明过于简单,本利用矢量代数的知识,证明平面运动刚体的角度与角加速度与基点的选择无关。  相似文献   
32.
陈江  季路成 《推进技术》2005,26(4):313-318
缘线匹配通过考虑多叶排叶轮机相邻叶排间前排叶片尾缘线与后排叶片前缘线空间相对位置匹配关系来进一步提升叶轮机性能,有潜力使叶轮机非定常设计走向工程实际。以一单级跨声轴流压气机和一单级轴流透平为例,尝试用基元流动展向积分方法和全优化方法改善其性能,从而示例应用缘线匹配的具体方法及前景。结果表明,缘线匹配为叶轮机非定常设计提供了可操作的自由度。  相似文献   
33.
赵学津  何洪庆 《推进技术》1989,10(4):7-13,78,79
本文归纳推力向量控制的主要方案,着重介绍摆动喷管、流体二次喷射方案的计算思路和结果.摆动喷管中的流场计算要考虑导弹偏摆对所产生的惯性力的影响;所得壁面压力畸变图说明,它是一个三维流场.在摆动喷管设计中要将铰链力减至最小,流体二次喷射的侧向力通过“等效实体模型”,用爆炸波的解来计算.  相似文献   
34.
以职业能力为核心探讨课程教学设计   总被引:1,自引:0,他引:1  
根据教学实践,结合高职培养目标,以职业能力为核心,介绍了力学课程的教学设计及教学改革实践。  相似文献   
35.
能谱变硬后的X射线对Ly12铝破坏效应的研究   总被引:1,自引:0,他引:1  
用数值模拟方法讨论了X射线的能谱向短波方向变化后,对Ly12铝破坏效应的影响,对所得结果进行了分析和解释。  相似文献   
36.
疲劳裂纹扩展随机过程相关参数的估计   总被引:3,自引:1,他引:3  
对数正态随机过程模型是可靠性与损伤容限分析中常用的裂纹扩展随机模型.在裂纹扩展对数正态随机过程模型的基础上,建立了由试验数据估计一般平稳正态随机过程相关参数的方法.应用这种方法可以直接由试验数据估计随机过程的相关参数.同时,给出了用Monte-Carlo方法估算置信区间的方法.最后,给出了用具体试验数据,这组试验数据共有237个数据点,估计随机过程相关参数的算例.  相似文献   
37.
半浮区液桥自由面振荡特征   总被引:1,自引:0,他引:1  
使用一套双路同步显微放大录像及图像处理系统,研究了夹角为90°的两个竖直剖面沿轴向不同高度液桥自由表面的位移振荡,得到轴向不同高度上的环向相位差,观测到在振荡周期内液桥表面轮廓线在不同时刻均不相交的特点。实验结果表明,液桥自由面振荡除具有径向扰动及轴向振荡变化外,还存在环向波动变化。根据实验结果,讨论了环向波动基本变化规律以及本实验在测量精度和测量误差方面存在的问题。  相似文献   
38.
The rising demand for Unmanned Aerial Systems(UASs) to perform tasks in hostile environments has emphasized the need for their simulation models for the preliminary evaluations of their missions. The efficiency of the UAS model is directly related to its capacity to estimate its flight dynamics with minimum computational resources. The literature describes several techniques to estimate accurate aircraft flight dynamics. Most of them are based on system identification. This paper presents an alternative methodology to obtain complete model of the S4 and S45 unmanned aerial systems. The UAS-S4 and the UAS-S45 models were divided into four sub-models, each corresponding to a specific discipline: aerodynamics, propulsion, mass and inertia, and actuator. The‘‘aerodynamic" sub-model was built using the Fderivatives in-house code, which is an improvement of the classical DATCOM procedure. The ‘‘propulsion" sub-model was obtained by coupling a two-stroke engine model based on the ideal Otto cycle and a Blade Element Theory(BET) analysis of the propeller. The ‘‘mass and the inertia" sub-model was designed utilizing the Raymer and DATCOM methodologies. A sub-model of an actuator using servomotor characteristics was employed to complete the model. The total model was then checked by validation of each submodel with numerical and experimental data. The results indicate that the obtained model was accurate and could be used to design a flight simulator.  相似文献   
39.
Electromechanical actuators (EMAs) are becoming increasingly attractive in the field of more electric aircraft because of their outstanding benefits, which include reduced fuel burn and maintenance cost, enhanced system flexibility, and improved management of fault detection and isolation. However, electromechanical actuation raises specific issues when being used for safety-critical aerospace applications like flight controls: huge reflected inertia to load, jamming-type failure, and increase of backlash with service due to wear and local dissipation of heat losses for thermal balance. This study proposes an incremental approach for virtual prototyping of EMAs. It is driven by a model-based system engineering process in order to enable simulation-aided design. Best practices supported by Bond graph formalism are suggested to develop a model’s structure efficiently and to make the model ready for use (or extension) by addressing the above mentioned issues. Physical effects are progressively introduced, and the realism of lumped-parameter models is increased step-by-step. In particular, multi-level component models are architected to ensure continuity between engineering activities. The models are implemented in the AMESim simulation environment, and simulation responses are given to illustrate how they can be used for preliminary sizing, control design, thermal balance verification, and faults to failure analysis. The proposed best practices intend to provide engineers with fast, reusable, and efficient means to assess performance virtually and enhance maturity, performance, and robustness.  相似文献   
40.
《中国航空学报》2016,(1):292-296
Sealing clearance is a key factor for a metal rubber seal’s sealability. The expansion coef-ficient and expansion deformation in the radial direction of metal rubber have been obtained through a thermal expansion experiment of metal rubber. The influence of the elastic modulus to the sealing clearance has been analyzed theoretically. By combining the temperature and elasticity factors of metal rubber with the elastic mechanics theory, the calculation formula of the sealing clearance has been derived, and the values of the sealing clearance and the leakage rate in certain working conditions have been calculated. Experimental results are consistent with calculation results in a high degree. The calculation formula of the sealing clearance can explain the influences of the temperature and elastic modulus factors of metal rubber on the sealing clearance. It can pro-vide guidance for the study of sealing mechanism of metal rubber seals.  相似文献   
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