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排序方式: 共有199条查询结果,搜索用时 15 毫秒
81.
Jiang Dongsheng Bu Xueqin Sun Bing Lin Guiping Zhao Hongtao Cai Yan Fang Ling 《中国航空学报》2016,(4):863-873
The ceramic membrane oxygen generation technology has advantages of high concentra-tion of produced oxygen and potential nuclear and biochemical protection capability. The present paper studies the ceramic membrane technology for onboard oxygen generation. Comparisons are made to have knowledge of the effects of two kinds of ceramic membrane separation technologies on oxygen generation, namely electricity driven ceramic membrane separation oxygen generation technology (EDCMSOGT) and pressure driven ceramic membrane separation oxygen generation technology (PDCMSOGT). Experiments were conducted under different temperatures, pressures of feed air and produced oxygen flow rates. On the basis of these experiments, the flow rate of feed air, electric power provided, oxygen recovery rate and concentration of produced oxygen are compared under each working condition. It is concluded that the EDCMSOGT is the oxygen generation means more suitable for onboard conditions. 相似文献
82.
分析了基于IPX(Internetwork Packet eXchange)协议的实时通信编程原理,讨论了针对某网络所开发的实时通信软件IPXSR的设计思想、特点、实现技术和调用方法.目前该软件已经通过了验收和鉴定,在实际系统中得到应用,效果良好.并能够方便地移植到其他的物理网络系统中,具有较大的实用价值. 相似文献
83.
一种富氧中空纤维膜组件的温度特性 总被引:3,自引:0,他引:3
通过实验研究温度对中空纤维膜组件氧/氮分离性能的影响,结果表明温度能够明显影响膜的分离特性,并且不影响富氧浓度,可以通过控制膜组件的使用温度来增加富氧产量. 相似文献
84.
微流体动力学研究发展与现状 总被引:4,自引:0,他引:4
在分析微流体流动特性基础上,介绍了微流体动力学研究的发展与现状,包括临界雷诺数、固液界面速度滑移、微流体热传导特性等基本问题的研究结果。 相似文献
85.
Zhong Lingwei Liu Yu Li Juan Gu Zuo Jiang Haocheng Wang Haixing Tang Haibin 《中国航空学报》2010,23(1):15-21
Charge exchange(CEX) ions could inflict severe damages on the ion thruster optical system. This article is aimed at investigating the characteristics of the CEX ions and their influences upon the optical system by means of particle-in- cell(PIC) ion simulation and Monte Carlo collision(MCC) methods. The results from numerical simulation indicate that despite the fact that CEX ions appear in the entire beamlet region near the ion optical system, the ones that present themselves downstream of the accelerator grid have good reason for attracting more attention. As their trajectories are significantly affected by the local electric field, a great number of CEX ions are accelerated toward grids resulting in sputtering erosion. When the influences of the CEX ions are considered in the numerical simulation, there could hardly be observed augments in the screen grid current, but the accelerator grid current increases from zero to 1. 4% of the beamlet current. It can be understood from the numerical simulation that the CEX ions formed in the region far downstream of the accelerator grid should be blamed for the erosion on the downstream surface of the accelerator grid. 相似文献
86.
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88.
】阐述了高等数学标准化测试计算机辅助教学软件开发的环境,它是在Win-dows中文环境中,利用FoxPro数据库软件和Word字处理软件编制的。介绍了高等数学标准化测试CAI软件的功能及特点,通过DDE技术实现高等数学标准化测试试题的输入输出的方法 相似文献
89.
汇集国内外开发的新型换热转化器(亦称转化炉)的设计形式和结构特征,可供老厂节气节能挖潜技术改造或新建装置优选和参考。 相似文献
90.
Harry W. Jones Mark H. Kliss 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2010
As NASA implements the U.S. Space Exploration Policy, life support systems must be provided for an expanding sequence of exploration missions. NASA has implemented effective life support for Apollo, the Space Shuttle, and the International Space Station (ISS) and continues to develop advanced systems. This paper provides an overview of life support requirements, previously implemented systems, and new technologies being developed by the Exploration Life Support Project for the Orion Crew Exploration Vehicle (CEV) and Lunar Outpost and future Mars missions. The two contrasting practical approaches to providing space life support are (1) open loop direct supply of atmosphere, water, and food, and (2) physicochemical regeneration of air and water with direct supply of food. Open loop direct supply of air and water is cost effective for short missions, but recycling oxygen and water saves costly launch mass on longer missions. Because of the short CEV mission durations, the CEV life support system will be open loop as in Apollo and Space Shuttle. New life support technologies for CEV that address identified shortcomings of existing systems are discussed. Because both ISS and Lunar Outpost have a planned 10-year operational life, the Lunar Outpost life support system should be regenerative like that for ISS and it could utilize technologies similar to ISS. The Lunar Outpost life support system, however, should be extensively redesigned to reduce mass, power, and volume, to improve reliability and incorporate lessons learned, and to take advantage of technology advances over the last 20 years. The Lunar Outpost design could also take advantage of partial gravity and lunar resources. 相似文献