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821.
就宇航电子设备中壳体结构的建模进行了研究,采用板壳单元来描述结构,用局部刚化模拟壳体转角和加强处,并对壳体单元自由度和复要边界条件的处理作了大胆有益的探索。  相似文献   
822.
孙茂  H.C.Curtiss 《航空学报》1989,10(9):413-419
 本文对贴地飞行时的旋翼进行了流场显示和桨盘处下洗速度测量的实验研究。揭示并研究了环流和地面涡现象及其对旋翼平面下洗速度分布的影响,指出了旋翼贴地飞行时拉力、力矩等剧烈变化的原因。  相似文献   
823.
本文介绍航天飞机的航天指控中心的功能和历史,阐述了通信和数据处理设施,重点则在显示系统的变迁。作为航天指控中心改造的一部分,将用新技术成果取代现有的显示系统。这种更新改造将构成一套高性能局网(LAN),向各工程工作站发送实时和历史数据,在工作站上处理和显示。这种结构的好处是:软件开发环境更灵活,更加模块化,因而有利于今后的改造更新。探讨了建议的新结构以及这一改造的工程和计划管理问题,重点在各局网的任务。  相似文献   
824.
本文提出了一种予测三氧化铝粒子尺寸的新方法,用在空军的改进固体性能程序(SPP)中,将粒子在火箭喷管中生成和破裂的各种理论模型和已有的粒子尺寸的数据作了比较。发现没有一个理论模型对建立粒子尺寸与推进剂组分和发动机参数的关系是合适的。因此,采用线性和非线性最小二乘法的经验方法。试图建立各种参数、分类以及各种理论模型提出的函数形式之间的关系。最后把只有三个自由参数的比较简单的模型推荐用于 SPP。  相似文献   
825.
本文描述一种具有内部参考的改进的线性集成电路温度传感器,其主要的性能是:易校准(只有一个步骤),在宽温度范围内(-4.6mv/℃;-50℃到+125℃)具有高灵敏度,低输出阻抗(40Q),低功耗(200μw)。此器件中的扩散电阻以通用线性集成电路的工艺过程制造。文中还讨论了这种传感器在热电偶冷接点补偿中的应用。  相似文献   
826.
对粉浆浇注熔硅天线罩结构在3.7~5.0M时淋雨滑车试验结果作了最后评估.其结果为:在霍洛曼空军基地利用滑车轨道设备进行的试验证明,对相同的法向速度分量来说,粉浆浇注熔硅材料的最大冲蚀率变化系数为3;高纯度粉浆浇注熔硅的雨水冲蚀极限速度约为500m/s;法向速度分量超限时,天线罩出现重大损伤;硅树脂防潮密封胶DC808和DE SR80可能不会严重影响雨水冲蚀性能;建议在自然雨区中飞行的导弹,其碰撞角应受控制,以使天线罩上的自由流的法向速度小于500m/s.  相似文献   
827.
Abstract We examined a low-energy mechanism for the transfer of meteoroids between two planetary systems embedded in a star cluster using quasi-parabolic orbits of minimal energy. Using Monte Carlo simulations, we found that the exchange of meteoroids could have been significantly more efficient than previously estimated. Our study is relevant to astrobiology, as it addresses whether life on Earth could have been transferred to other planetary systems in the Solar System's birth cluster and whether life on Earth could have been transferred from beyond the Solar System. In the Solar System, the timescale over which solid material was delivered to the region from where it could be transferred via this mechanism likely extended to several hundred million years (as indicated by the 3.8-4.0?Ga epoch of the Late Heavy Bombardment). This timescale could have overlapped with the lifetime of the Solar birth cluster (~100-500?Myr). Therefore, we conclude that lithopanspermia is an open possibility if life had an early start. Adopting parameters from the minimum mass solar nebula, considering a range of planetesimal size distributions derived from observations of asteroids and Kuiper Belt objects and theoretical coagulation models, and taking into account Oort Cloud formation models, we discerned that the expected number of bodies with mass>10?kg that could have been transferred between the Sun and its nearest cluster neighbor could be of the order of 10(14) to 3·10(16), with transfer timescales of tens of millions of years. We estimate that of the order of 3·10(8)·l (km) could potentially be life-bearing, where l is the depth of Earth's crust in kilometers that was ejected as the result of the early bombardment. Key Words: Extrasolar planets-Interplanetary dust-Interstellar meteorites-Lithopanspermia. Astrobiology 12, 754-774.  相似文献   
828.
Abstract The Cuatro Ciénegas Basin (CCB) has been identified as a center of endemism for many life-forms. Nearly half the bacterial species found in the spring systems have their closest relatives in the ocean. This raises the question of whether the high diversity observed today is the product of an adaptive radiation similar to that of the Galapagos Islands or whether the bacterial groups are "survivors" of an ancient sea, which would be of interest for astrobiology. To help answer this question, we focused on Firmicutes from Cuatro Ciénegas (mainly Bacillus and Exiguobacterium). We reconstructed the phylogenetic relationships of Firmicutes with 28 housekeeping genes and dated the resulting tree using geological events as calibration points. Our results show that marine Bacillus diverged from other Bacillus strains 838?Ma, while Bacillus from Cuatro Ciénegas have divergence dates that range from 770 to 202?Ma. The members of Exiguobacterium from the CCB conform to a much younger group that diverged from the Andes strain 60?Ma and from the one in Yellowstone 183?Ma. Therefore, the diversity of Firmicutes in Cuatro Ciénegas is not the product of a recent radiation but the product of the isolation of lineages from an ancient ocean. Hence, Cuatro Ciénegas is not a Galapagos Archipelago for bacteria but is more like an astrobiological "time machine" in which bacterial lineages survived in an oligotrophic environment that may be very similar to that of the Precambrian. Key Words: Firmicutes-Cuatro Ciénegas-Precambrian-Molecular dating-Western Interior Seaway. Astrobiology 12, 674-684.  相似文献   
829.
Tepfer D  Zalar A  Leach S 《Astrobiology》2012,12(5):517-528
The plausibility that life was imported to Earth from elsewhere can be tested by subjecting life-forms to space travel. Ultraviolet light is the major liability in short-term exposures (Horneck et al., 2001 ), and plant seeds, tardigrades, and lichens-but not microorganisms and their spores-are candidates for long-term survival (Anikeeva et al., 1990 ; Sancho et al., 2007 ; J?nsson et al., 2008 ; de la Torre et al., 2010 ). In the present study, plant seeds germinated after 1.5 years of exposure to solar UV, solar and galactic cosmic radiation, temperature fluctuations, and space vacuum outside the International Space Station. Of the 2100 exposed wild-type Arabidopsis thaliana and Nicotiana tabacum (tobacco) seeds, 23% produced viable plants after return to Earth. Survival was lower in the Arabidopsis Wassilewskija ecotype and in mutants (tt4-8 and fah1-2) lacking UV screens. The highest survival occurred in tobacco (44%). Germination was delayed in seeds shielded from solar light, yet full survival was attained, which indicates that longer space travel would be possible for seeds embedded in an opaque matrix. We conclude that a naked, seed-like entity could have survived exposure to solar UV radiation during a hypothetical transfer from Mars to Earth. Chemical samples of seed flavonoid UV screens were degraded by UV, but their overall capacity to absorb UV was retained. Naked DNA encoding the nptII gene (kanamycin resistance) was also degraded by UV. A fragment, however, was detected by the polymerase chain reaction, and the gene survived in space when protected from UV. Even if seeds do not survive, components (e.g., their DNA) might survive transfer over cosmic distances.  相似文献   
830.
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