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211.
俯仰三角翼的流态及结构 总被引:1,自引:0,他引:1
本文对俯仰三角翼的流动特性进行了实验研究,给出了俯三角翼的截面流态特点,对三角翼俯仰 运动的流动机理进行了分析。 相似文献
212.
M. Nelson W.F. DempsterJ.P. Allen 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2008,41(5):675-683
Development of reliable and robust strategies for long-term life support for planetary exploration must be built from real-time experimentation to verify and improve system components. Also critical is incorporating a range of viable options to handle potential short-term life system imbalances. This paper revisits some of the conceptual framework for a Mars base prototype which has been developed by the authors along with others previously advanced (“Mars on Earth®”) in the light of three years of experimentation in the Laboratory Biosphere, further investigation of system alternatives and the advent of other innovative engineering and agri-ecosystem approaches. Several experiments with candidate space agriculture crops have demonstrated the higher productivity possible with elevated light levels and improved environmental controls. For example, crops of sweet potatoes exceeded original Mars base prototype projections by an average of 46% (53% for best crop) ultradwarf (Apogee) wheat by 9% (23% for best crop), pinto bean by 13% (31% for best crop). These production levels, although they may be increased with further optimization of lighting regimes, environmental parameters, crop density etc. offer evidence that a soil-based system can be as productive as the hydroponic systems which have dominated space life support scenarios and research. But soil also offers distinct advantages: the capability to be created on the Moon or Mars using in situ space resources, reduces long-term reliance on consumables and imported resources, and more readily recycling and incorporating crew and crop waste products. In addition, a living soil contains a complex microbial ecosystem which helps prevent the buildup of trace gases or compounds, and thus assist with air and water purification. The atmospheric dynamics of these crops were studied in the Laboratory Biosphere adding to the database necessary for managing the mixed stands of crops essential for supplying a nutritionally adequate diet in space. This paper explores some of the challenges of small bioregenerative life support: air-sealing and facility architecture/design, balance of short-term variations of carbon dioxide and oxygen through staggered plantings, options for additional atmospheric buffers and sinks, lighting/energy efficiency engineering, crop and waste product recycling approaches, and human factor considerations in the design and operation of a Mars base. An “Earth to Mars” project, forging the ability to live sustainably in space (as on Earth) requires continued research and testing of these components and integrated subsystems; and developing a step-by-step learning process. 相似文献
213.
文章简要介绍了波导宽边耦合3dB功分桥的工作原理,重点阐述四耦合窗Ka频段宽带波导宽边耦合3dB功分桥的仿真设计过程、仿真结果以及最终的实物测试结果。最后得到一个性能优良的Ka频段宽带波导宽边耦合3dB功分桥。 相似文献
214.
一种尾流消散动态预测的改进算法 总被引:1,自引:0,他引:1
尾流间隔是增大跑道容量的主要限制因素之一,为了在保持安全水平的前提下有效地增大跑道容量,可以对尾流消散进行动态预测,并据此缩减尾流间隔。研究了一种尾涡消散动态预测算法,该算法考虑了真实大气的大气分层、湍流、侧风、迎面风、风切变以及地效影响,并用一阶后向差分对该算法进行了离散化改进;在改进算法的基础上,时进近阶段尾流的消散在Matlab中进行了仿真计算;计算结果复现了尾涡的下沉现象和侧风对尾涡传输的线性累积效应。 相似文献
215.
针栓式喷注单元膜束撞击雾化混合过程数值模拟 总被引:5,自引:1,他引:5
为了全面认识针栓式喷注器喷雾场结构,基于自适应网格加密技术和分三相计算的PLIC VOF(Piecewise Linear Interface Calculation Volume of Fluid)方法对针栓式喷注单元膜束撞击雾化混合过程进行了仿真分析,通过对两路推进剂分别进行界面追踪,获得了膜束撞击雾化混合过程的详细结构特征,与高速摄影试验结果定性定量对比均吻合较好,验证了数值方法的准确性。以此为基础对膜束撞击的喷雾场结构、撞击变形过程、流场涡结构、雾化破碎典型特征及破碎后的雾化混合分布特征进行了识别分析,结果表明:膜束撞击形成了液束未穿透液膜和液束穿透液膜2种不同的喷雾扇结构。膜束撞击形成的喷雾扇呈"Ω"形,膜束同时发生弯曲变形和横截面变形。另外,膜束撞击同时受到正压和剪切应力作用,导致了一系列复杂涡流现象,使得相互作用增强,雾化混合均增强,这也是膜束撞击喷注构型优于膜膜撞击的本质原因。最后,还发现膜束撞击喷雾场液滴分布呈现分区结构特征,分别是液束控制主导的上雾化区、液膜控制主导的下雾化区及夹在中间的混合区,实际中应兼顾雾化特性和混合特性,选取中等动量比膜束撞击,这可为针栓式喷注器的理论研究和工程设计提供重要参考。 相似文献
216.
Rotating experimental investigations were carried out to study the oil sealing capability of two different floating ring seals in cold/hot state for aero-engine. High-speed Floating Ring Seal(HFRS) is a seal with the inner diameter of 83.72 mm and maximum speed of 38000 r/min, and Low-speed Floating Ring Seal(LFRS) is another seal with the inner diameter of 40.01 mm and maximum speed of 18000 r/min. In hot state, sealing air with the temperature of 371 K and oil with the temperature of 343 K was employed to model the working conditions of an aero-engine. Comparisons between floating ring seal and labyrinth seal were done to inspect the leakage performance.More attention was paid to the critical pressure ratio where the oil leakage began. Results show that the critical pressure ratio in cold state is obviously larger than that in hot state for both seals. An underlying sealing mechanism for floating ring seal is clarified by the fluid film, which closely associates with the dimensionless parameter of clearance over rotating diameter(2 c/Dr). Another fantastic phenomenon is that the leakage coefficient in hot state, not the leakage magnitude, is unexpectedly larger than that in cold state. Overall, the leakage performance of the floating ring seal is better than the labyrinth seal. 相似文献
217.
连接涡线端点形成涡段并计算其对空间任意点的影响系数是尾迹分析的基本环节,称为涡元技术。本文推出圆弧涡元与其应用程序,并引进抛物拱弧涡元,以代替传统的直涡元。提供的曲涡元程序可方便地用于尾迹分析,算例表明曲涡元在提高精度减少计算量方面的先进性。 相似文献
218.
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220.
用氢气泡法显示了两种大涡,即平板起动涡和细干扰线在圆盘前诱发的大涡的内部流动结构。它们的轴向流,涡核的孤立波,以及向破裂的演变。 相似文献