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Laminar flow design is one of the most effective ways to reduce the drag of a commercial aircraft by expanding the laminar flow region on the surface of the aircraft. As material science develops, the emergence of new materials such as low surface energy materials has offered new choices for laminar flow design of commercial aircraft. Different types of low surface energy micro-nano coatings are prepared to verify the effects on the boundary layer transition position and the drag of the airfoil through wind tunnel tests. The infrared thermal imaging technology is adopted for measuring the boundary layer transition, while the momentum integral approach is employed to measure the drag coefficient through a wake rake. Infrared thermal imaging results indicate that the coatings are capable of moving backward the boundary layer transition position at both a low velocity of Mach number 0.15 and a high velocity of Mach number 0.785. Results of the momentum integral approach demonstrate that the drag coefficients are reduced obviously within the cruising angle of attack range from 1° and 5° by introducing the low surface energy micro-nano coating technology. 相似文献
103.
Robustness of complex networks has been studied for decades,with a particular focus on network attack.Research on network repair,on the other hand,has been conducted only very lately,given the even higher complexity and absence of an effective evaluation metric.A recently proposed network repair strategy is self-healing,which aims to repair networks for larger compo nents at a low cost only with local information.In this paper,we discuss the effectiveness and effi ciency of self-healing,which limits network repair to be a multi-objective optimization problem and makes it difficult to measure its optimality.This leads us to a new network repair evaluation metric.Since the time complexity of the computation is very high,we devise a greedy ranking strategy.Evaluations on both real-world and random networks show the effectiveness of our new metric and repair strategy.Our study contributes to optimal network repair algorithms and provides a gold standard for future studies on network repair. 相似文献
104.
为研究振动载荷和定应变对HTPB推进剂基体/颗粒粘接界面的影响,进行了振动载荷和定应变作用下HTPB推进剂高温老化试验,测试了不同载荷和老化时间下推进剂的宏观力学性能,利用扫描电镜观测了推进剂的细观破坏过程,基于颗粒增强本构理论,分析了推进剂基体/颗粒粘接界面的损伤规律。结果表明,振动载荷和定应变的作用使HTPB推进剂的初始模量和抗拉强度均减小,高温老化、定应变和振动载荷的作用都会破坏推进剂基体/颗粒粘接界面、降低推进剂固体颗粒模量增强效果,定应变状态下振动载荷作用后,粘接界面损伤最严重。 相似文献
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提高卫星信道资源利用率,探索高效可行的端站接入机制是卫星通信发展亟待解决的问题之一。当前卫星通信DVB-RCS标准基于带宽预先规划的接入机制与端站随遇接入的需求矛盾凸显,因此提出一套信道反馈优化接入机制,综合考虑各端站数据业务需求,在不改变原有协议信令特征的基础上,探索性地引入谦虚度激励方法,创造性地构造动态协商反馈模型并加以求解,达到提高端站接入数量、满足随遇接入需求、提升信道利用效率、最大化整体带宽通信业务效益的目的。通过试验验证,带宽分配反馈优化机制比传统模式提高近1倍接入率,最大端站数接入时算法耗时约只有0.67s,可为卫星信道使用提供技术参考。 相似文献
108.
Availability is a main feature of design and operation of all engineering system. Recently,availability evaluation of periodical inspection systems with different structures is at the center of attention due to the wide application in engineering. In this paper, an analytical and probabilistic availability model for periodical inspection system is proposed by a new recursively algorithm,which can achieve limiting average availability and instantaneous availability of periodical inspection system under arbitrary lifetime and repair-time distributions. Then three application examples are presented, the systems lifetime and repair-time are respectively fellow exponential/exponential,Weibull/normal and Weibull/lognormal distribution. Finally, a Weibull/lognormal system is studied to analyze the dynamic relationship between inspection period and availability. The results indicate that the proposed approach can provide the technology support for improving system availability and determining reasonable inspection period. 相似文献
109.
本文通过对该型教练机现有航空电子系统构型、驾驶员操作程序、接口控制文件深入研究,结合未来功能扩展需求,给出了合理的系统构型分析、功能分配、数据流规划、原相关系统软件改动分析,在此基础上还设计出了嵌入式训练系统技术方案.依据方案研制的嵌入式训练系统原理样机通过系统动态试验、航电系统地面综合试验和飞机地面通电试验,证明系统... 相似文献
110.
建立英语教学的激励机制,充分发挥学生的学习潜能,可采取创设语言环境,组织学生参加活动,利用外部动机和内部动机,激发学生对学习内容的直接兴趣等具体措施,以便使每一位学生都有同样的机会发挥自己的英语才能 相似文献