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121.
支持MEMS的CAD/CAE系统结构研究 总被引:5,自引:0,他引:5
康建初 《北京航空航天大学学报》1998,24(4):475-478
CAD/CAE技术在MEMS(Micro Electro Mechanical Systems)研究过程中具有非常重要的作用.本文首先介绍了用于MEMS的CAD/CAE技术特点,然后研究了MEMS CAD/CAE系统结构,给出了软件支持工具结构框图,指明了解决其中关键技术的途径.CAD/CAE技术的应用,将提高微型机电系统的设计质量,缩短研制周期,使之及早走向工业化. 相似文献
122.
Ada软件的动态测试技术研究 总被引:2,自引:0,他引:2
为改善软件质量,对Ada软件的动态测试技术进行了研究,并且就以下内容着重进行了讨论;Ada软件的分析与理解;Ada软件的动态测试原则与方法;Ada软件的动态测试工具ASDT。 相似文献
123.
结构优化中的混合变量应力约束近似方法 总被引:2,自引:0,他引:2
提出一种处理结构优化应力约束的新近似方法,以往一般直接对应力约束按设计变量近似,本文用近似内力间接近似应力约束以得到更高的近似质量,根据对内力和设计变量关系分析,提出了内力按混合变量一阶泰勒展开的高捏近似方法。近似优化问题用约束变尺度法求解,最后按出了几个典型例题。结果表明该方法简单,有效,可靠。 相似文献
124.
125.
实测载荷谱数据处理系统 总被引:2,自引:0,他引:2
简要介绍了实测载荷谱数据处理系统,较深入地论述了实测载荷谱数据处理的几个重要方面,给出了该系统处理直升机旋翼系统动部件实测载荷谱的实例,通过大子样二维疲劳2载荷母体分布参数估计及假设检验,发现载荷幅值服从半正态分布,载荷均值服从三参数Weibull分布。 相似文献
127.
Shuji Sun Panpan Ban Chun Chen Zonghua Ding Zhengwen Xu 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2011,47(12):2194-2198
The electromagnetic drift plays an important role in low-latitude storm time ionospheric dynamics. In this study we attempt to utilize the electric field data into ionospheric predictions by using support vector machine (SVM), a promising algorithm for small-sample nonlinear regressions. Taking the disturbance electric field data as input, different SVMs have been trained for three seasonal bins at two stations near the north crest of the Equatorial Ionization Anomaly (EIA). Eighteen storm events are used to check out their predicting abilities. The results show fairly good agreement between the predictions and observations. Compared with STORM, a widely used empirical correlation model, the SVM method brings a relative improvement of 23% for these testing events. Based on this study we argue that the SVM method can improve the storm time ionospheric predictions. 相似文献
128.
Air route network optimization,one of the essential parts of the airspace planning,is an effective way to optimize airspace resources,increase airspace capacity,and alleviate air traffic con gestion.However,little has been done on the optimization of air route network in the fragmented airspace caused by prohibited,restricted,and dangerous areas (PRDs).In this paper,an air route network optimization model is developed with the total operational cost as the objective function while airspace restriction,air route network capacity,and non-straight-line factors (NSLF) are taken as major constraints.A square grid cellular space,Moore neighbors,a fixed boundary,together with a set of rules for solving the route network optimization model are designed based on cellular automata.The empirical traffic of airports with the largest traffic volume in each of the 9 flight information regions in mainland China is collected as the origin-destination (OD) air port pair demands.Based on traffic patterns,the model generates 35 air routes which successfully avoids 144 PRDs.Compared with the current air route network structure,the number of nodes decreases by 41.67%,while the total length of flight segments and air routes drop by 32.03% and 5.82% respectively.The NSLF decreases by 5.82% with changes in the total length of the air route network.More importantly,the total operational cost of the whole network decreases by 6.22%.The computational results show the potential benefits of the model and the advantage of the algorithm.Optimization of air route network can significantly reduce operational cost while ensuring operation safety. 相似文献
129.
A coupling fluid-structure method with a combination of viscous wake model(VWM),computational fluid dynamics(CFD) and comprehensive structural dynamics(CSD) modules is developed in this paper for rotor unsteady airload prediction. The hybrid VWM/CFD solver is employed to model the nonlinear aerodynamic phenomena and complicated rotor wake dynamics;the moderate deflection beam theory is implemented to predict the blade structural deformation; the loose coupling strategy based on the ‘delt method' is used to couple the fluid and structure solvers.Several cases of Helishape 7A rotor are performed first to investigate the effect of elastic deformation on airloads. Then, two challenging forward flight conditions of UH-60 A helicopter rotor are investigated, and the simulated results of wake geometry, chordwise pressure distribution and sectional normal force show excellent agreement with available test data; a comparison with traditional CFD/CSD method is also presented to illustrate the efficiency of the developed method. 相似文献