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排序方式: 共有909条查询结果,搜索用时 358 毫秒
81.
研究了在脉间变频格式目标雷达散射截面(RCS)测试中目标径向速度对测试结果的影响.从目标像位置偏移和目标像发散两个方面分析了目标径向速度造成RCS测试结果误差的原因,进行了计算机仿真,给出速度与误差的数值关系.通过对仿真数据的分析,提出减小RCS测试误差的方法.根据双通道雷达能够同时在两个频段上对同一目标进行测试的特点提出了一种校正被测目标径向速度影响的方法,并用该方法对BHEML-1型雷达的外场实测数据进行了处理和分析比较. 相似文献
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84.
组建了一套利用静电探针诊断技术测量减压直流非转移弧等离子体射流速度的实验系统。对以纯氩为工质的等离子体,在气流量1.25×10^-1kg/s、弧电流80A、真空室压力165Pa的条件下,测量了射流的速度及其分布。结果表明射流在发生器出口处中心最高速度约为1200m/s,在半径20mm处减小到635m/s。沿射流轴线方向的速度梯度约为10(ms^-1)/mm。射流速度随着弧电流增加而缓慢单调增加;当真空室压力从165Pa提高到2kPa时,发生器出口轴线上的射流速度从1200m/s降至570m/s。 相似文献
85.
An experimental investigation into pre-swirl effectiveness and receiver hole discharge coefficient characteristics for a high radius injection pre-swirl cooling systems was carried out on a physically representative experimental rig with a 450 mm diameter rotor.The receiver holes and pre-swirl nozzle were located at a radius of 181 mm and 180 mm respectively.The experimental work was mainly conducted at 5 000~12 000 r/min,4 bar absolute pressure and 1.132 kg/s air supply.The maximum air supply temperature was 190 ℃.Pressure and temperature distributions in the pre-swirl system were examined with an emphasis on the velocity effectiveness of the pre-swirl system as a whole and on the discharge coefficients of the rotating 'receiver holes' in the rotor.The results showed that the velocity effectiveness increased with increasing swirl ratio resulting in reduced blade cooling flow temperature.Different seal flow configurations caused very different effectiveness at different speeds,but outflow through the inner and outer seals always gave the highest effectiveness compared other configurations.Increasing the seal flow rate reduced the effectiveness.For the coefficient of discharge,except for the low speed range,it increased with increase in swirl ratio for most speeds. 相似文献
86.
The role of AVDR in linear cascade testing 总被引:1,自引:0,他引:1
Linear cascade testing plays an important role in the research and development of turbomachinery and is widely used over the world.The ideal cascade model of a turbomachinery blade row is two-dimensional.In actual linear cascade testing, the flow through the test section converges due to the development of the boundary layer and secondary flow along the sidewall surfaces of the test section.Axial velocity density ratio(AVDR) is adopted to account for the deviation of the tested cascade flow from the ideal 2D model.Among numerous published cascade works, the influence of AVDR on cascade performance is seen to be complicated with many affecting factors, such as those related to cascade/blade geometry and flow conditions.Also, controlling AVDR is limited by the facility capability.Furthermore, real blade-to-blade flow in turbomachines is usually associated with AVDR greater than unity due to limited span of blades between the hub and shroud such that cascade testing without reducing AVDR could be favored sometimes.All these facets add complexity and diversification to the matter.The current paper reviews previous studies and results on AVDR.Consolidated understanding on the role of AVDR and recommendations on how to deal with it in linear cascade testing are provided. 相似文献
87.
喷雾器喷嘴出口喷流流场特性的实验研究 总被引:1,自引:0,他引:1
通过定性定量实验手段研究了以水为单介质流体的某农用喷雾器喷嘴出口流场。首先采用单反相机常规拍摄方法,记录了喷雾压力在50~4 000 Pa范围内的喷嘴出口流场,发现了随着喷雾压力增大,喷嘴出口射流的形状经历了形成液泡到液泡破裂的过程,以及射流发展及最终稳定过程。然后通过PIV测速技术对喷雾压力在1 000~4 000 Pa范围内的喷嘴出口流场进行了定量测量实验研究,获得了在纵向截面上,喷嘴出口速度随喷雾压力增大而增大,且在中心线上的速度随着离喷口距离的增加均呈现振荡衰减的变化规律。在同一位置横向截面上,随着喷雾压力的增加,旋流强度越强,流速越大;而在同一喷雾压力下,离喷嘴出口距离越近的横截面处旋流强度越大,流速也越大。本文实验研究结果验证了PIV测速技术可以用于水雾滴的速度场测量。 相似文献
88.
GPS/INS组合系统空中对准方法研究 总被引:3,自引:0,他引:3
针对单天线的GPS与捷联惯性导航组合系统,提出了一种空中对准方案,不同于传统的传递对准方法,仅依靠GPS测量信息进行速度匹配,完成空中初始对准。该方案采用扩展卡尔曼滤波方法解决对准过程中的非线性问题。仿真结果表明该方案的对准精度(1σ)可以达到水平姿态误差0.07,°方位误差0.3°。 相似文献
89.
在低速冲击载荷作用下,建立了一种适用于铺层总数较多的复合材料层合板的损伤预测模型。采用三维Puck失效准则预测层内纤维与基体的破坏,并获得基体失效时的断裂面角度。根据低速冲击下复合材料层合板的层间分层损伤机理,同时考虑面内横向正应力、厚度方向正应力、层间剪应力和相邻铺层的损伤状态等因素对界面分层的影响,发展了一种新的冲击分层失效准则。为快速有效地预测铺层总数较多的复合材料层合板的冲击损伤,通过对单元积分点处的应变进行线性插值,提出了在单个实体单元内预测多个铺层损伤的数值计算方法。模型成功预测了受冲击层合板具体的失效模式,预测的分层形状和尺寸与试验值吻合较好,并显著减少了有限元模型的规模,表明本文所发展的数值方法对预测复合材料层合板低速冲击损伤的有效性。 相似文献
90.
E.S. Seo T. Anderson D. Angelaszek S.J. Baek J. Baylon M. Buénerd M. Copley S. Coutu L. Derome B. Fields M. Gupta J.H. Han I.J. Howley H.G. Huh Y.S. Hwang H.J. Hyun I.S. Jeong D.H. Kah K.H. Kang D.Y. Kim H.J. Kim K.C. Kim M.H. Kim K. Kwashnak J. Lee M.H. Lee J.T. Link L. Lutz A. Malinin A. Menchaca-Rocha J.W. Mitchell S. Nutter O. Ofoha H. Park I.H. Park J.M. Park P. Patterson J.R. Smith J. Wu Y.S. Yoon 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2014
The Cosmic Ray Energetics And Mass (CREAM) instrument is configured with a suite of particle detectors to measure TeV cosmic-ray elemental spectra from protons to iron nuclei over a wide energy range. The goal is to extend direct measurements of cosmic-ray composition to the highest energies practical, and thereby have enough overlap with ground based indirect measurements to answer questions on cosmic-ray origin, acceleration and propagation. The balloon-borne CREAM was flown successfully for about 161 days in six flights over Antarctica to measure elemental spectra of Z = 1–26 nuclei over the energy range 1010 to >1014 eV. Transforming the balloon instrument into ISS-CREAM involves identification and replacement of components that would be at risk in the International Space Station (ISS) environment, in addition to assessing safety and mission assurance concerns. The transformation process includes rigorous testing of components to reduce risks and increase survivability on the launch vehicle and operations on the ISS without negatively impacting the heritage of the successful CREAM design. The project status, including results from the ongoing analysis of existing data and, particularly, plans to increase the exposure factor by another order of magnitude utilizing the International Space Station are presented. 相似文献