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81.
THEPREDICTIONSOFCONVECTIVEHEATTRANSFERONTURBINEBLADEAIRFOILBYUSINGLOW-REYNOLDSNUMBERTURBULENCEMODELTHEPREDICTIONSOFCONVECTIVE...  相似文献   
82.
Dynamicloadisoneoftheimportantoriginalparametersinstructuraldynamicanalysis.Ithasobviousinfluencestodynamicsdesign,vibrationcontrols,activecontroltechnologyandsoon.Sincel97O,manyresearchitemsinthisfieldhavebeenaccomplishedintheworld-Sometheoriesandexperimentalmethodsofdynamicloadidentificationhadbeencreatedinfrequencydomain[l'2J-Howeverftherearesomedisadvantagesthattheycouldbeadaptedonlytoidenti-fythesteady-stateloadandnottoidentifythetransientload,suchasshockloadwithshortsampling.Forvarious…  相似文献   
83.
随着航空事业飞跃发展,风洞实验技术日异月新。在超(跨)音速风洞中似乎很少采用杠杆机械式天平来测量气动力,而通常采用电动天平。这主要原因是由于超(跨)音速风洞受到动力设奋的限制,工作时间短,实验段尺寸远比低速风洞为小,经济性差。  相似文献   
84.
ELECTRONICCONTROLOFTURBINEPOWERUNITS¥WangDaobo(DepartmentofScienceandTechnology,NUAA29YudaoStreet,Nanjing210016,P.R.China)Abs...  相似文献   
85.
The observations of Global Positioning System (GPS) scintillation, Total Electron Content (TEC) depletion, the periodic structure of TEC and Rate of TEC Index (ROTI) over south China were presented. Data were collected from GPS observations at stations of Shenzhen and Guangzhou from 2011 to 2012. This study reported that the ratio of simultaneous occurrences of TEC depletions with strong scintillations was higher than that of TEC depletions with weak scintillations in vernal and autumnal equinoxes of 2011 over South China. The number of the periodic structures of TEC with depletion contained was greater than that with no depletion contained corresponding to strong scintillations. The structure of the slab of plasma irregularities could be responsible for the simultaneous occurrences of TEC depletion with strong scintillations and ROTI. Before and during the occurrences of strong scintillation, there was Large-Scale Wave Structure (LSWS) which provided the seed ionization perturbation to trigger ESF irregularities and contributed to the periodic structure of TEC.   相似文献   
86.
得益于数据处理和存储技术的进步,从飞机上获取的数据量呈爆发式增长,可对飞机实施预测性维修的机会也越来越多。其中,不断进步的传感器技术是支撑飞机健康监控技术发展的关键因素。  相似文献   
87.
2014年5月12-15日,第32届机构间空间碎片协调委员会(IADC)会议在北京召开,中国国家航天局、意大利航天局、法国国家空间研究中心、加拿大航天局、德国航空航天中心、欧洲航天局、印度空间研究组织、日本宇宙航空研究开发机构、美国航空航天局、俄罗斯联邦航天局、英国国家航天局等11个正式成员机构,亚太空间合作组织以及作为IADC观察员的韩国航天局参加了此次会议,外交部、中科院等国内有关部门代表也应邀出席了此次会议。参加会议的国内外代表共150多人。  相似文献   
88.
The inverse design based on the pressure distribution is an essential approach to realize the improvement of Natural Laminar Flow(NLF) performance for nacelles. However, the direct definition of target pressure distribution at design point is challenging for the dilemma to consider the constraints of shock wave and laminar flow at the same time. In addition, the universality of method will be limited when the inverse design is strongly coupled with the solver. Thus, a double-decoupled methodolog...  相似文献   
89.
This paper proposes an optimal, robust, and efficient guidance scheme for the perturbed minimum-time low-thrust transfer toward the geostationary orbit. The Earth’s oblateness perturbation and shadow are taken into account. It is difficult for a Lyapunov-based or trajectory-tracking guidance method to possess multiple characteristics at the same time, including high guidance optimality, robustness, and onboard computational efficiency. In this work, a concise relationship between the minimum-tim...  相似文献   
90.
With the complete success of the 2nd stage of Chinese Manned Space Program (CMSP), several science researches have been performed on Tiangong-1 experimental spacelab, which was docked with three Shenzhou spaceships one after another. The China's real spacelab, Tiangong-2 will be launched in 2015, docked with a Shenzhou spaceship soon. After six months, it will be docked with the first Chinese cargo ship (Tianzhou-1). More space science researches, involving with space biology, fluid physics, fundamental physics, materials science, Earth science, astronomy and space environmental science, will be operated on Tiangong-2 spacelab, and crewed and cargo spaceships. Furthermore, the considerable large-scale space utilization of Shina's Space Station is planned. The research fields include yet not limited to space medicine and physiology, space life science and biotechnology, fluid physics and combustion in microgravity, space material science, and fundamental physics in microgravity, space astronomy, Earth science, space physics and space environment utilization, technology demonstration.   相似文献   
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