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1.
航天运输领域发展的核心目标包括提高运载能力、降低发射成本及减少发射准备时间等。相对于传统的化学推进技术,先进推进技术采用新能源或新机理,旨在从根本上满足未来对有效载荷、发射成本和发射周期的要求。对国内外组合动力装置、核聚变动力推进、离子推进、激光推进、核子脉冲推进、太阳帆推进、磁场帆推进、布萨德喷气推进、反物质推进等先进推进技术的研究进展进行综述和可行性分析,并给出了发展启示。  相似文献   
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Cosmic Research - The results of an analysis of the space–time characteristics and dynamics of precipitations of magnetospheric electrons with energies in the range from 0.1 to 0.7 MeV are...  相似文献   
3.
在运载火箭改进优化或新型运载火箭设计过程中,会遇到各种复杂的流动与传热问题。按照真实产品和物理过程直接建立的数值计算模型过于复杂,不同尺度的结构、流动与传热、长时间的飞行过程相互耦合,出现计算时间太长(数年)、收敛困难、程序调试困难等问题。针对初始条件复杂、飞行过程复杂、边界条件复杂3类具体问题,总结了3种相应的模型简化方法,分别是工程经验法、极限参数法、低维近似法,为推进剂复杂流动与传热的数值模拟提供参考。  相似文献   
4.
Itapetinga measurements at 48 GHz with the multibeam technique are used to determine the relative position of solar burst centroid of emission with high spatial accuracy and time resolution. For the Great Bursts of October 19,22, 1989, with a large production of relativistic particles, and October 23, it is suggested that, at 48 GHz, the bursts might have originated in more then one source in space and time. Additionally the October 19 and 22 Ground Level Events exhibited very unusual intensity-time profiles including double component structures for the onset phase. The Bern observatory spectral radio emission data show a strong spectral flattening typical for large source inhomogeneties. The interpretation for this is that large solar flares are a superposition of a few strong bursts (separated both in space and time) in the same flaring region.  相似文献   
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运载火箭在飞行过程中需要进行姿态调整以满足入轨要求,贮箱内推进剂在外界干扰力的作用下将发生晃动,由此引入了诸如气液接触面积、蒸发、冷凝过程及推进剂流动变化等不确定影响因素。实际飞行过程尤其是进入滑行段的初始推进剂晃动对贮箱内气枕压力及推进剂流动行为具有重要影响。在调研国内外运载火箭末级飞行过程中低温贮箱压力及推进剂流动特性的基础上,建立仿真模型,采用流体体积函数方法(VOF)分析滑行段推进剂流动特性变化对贮箱气枕压力的影响。  相似文献   
7.
蓄压器是抑制液体火箭POGO振动的重要装置,通过推导建立了更具普适性的蓄压器精细化动力学模型,给出了膜盒刚度、动质量以及膜盒组件数量对蓄压实际柔度参数、惯性系数的修正方法,该模型提高了输送系统液路频率的计算精度.针对带有充气管路的蓄压器结构形式,引入了充气管路的分布参数动力学模型.研究发现较长的充气管路不仅会对蓄压器产...  相似文献   
8.
Long-term balloon observations have been performed by the Lebedev Physical Institute since 1957 up to the present time. The observations are taken several times a week at the polar and mid latitudes and allow us to study dynamics of galactic and solar cosmic ray as well as secondary particle fluxes in the atmosphere and in the near-Earth space. Solar energetic particles (120) – mostly protons – (SEP) events with >100 MeV proton intensity above 1 cm−2 s−1 s−1 were recorded during 1958–2006. Before the advent of the SEP monitoring on spacecraft these results constituted the only homogeneous series of >100 MeV SEP events. The SEP intensities and energy spectra inferred from the Lebedev Physical Institute observations are consistent with the results taken in the adjacent energy intervals by the spacecraft and neutron monitors. Joint consideration of the SEP events series recorded by balloons and by neutron monitors during solar cycles 20–23 makes it possible to restore the probable number of events in solar cycle 19, which was not properly covered by observations. Some correlation was found between duration of SEP event production in a solar cycle and sunspot cycle characteristics.  相似文献   
9.
Since the beginning of the 22nd solar cycle twenty solar proton events were observed by the regular balloon measurements of cosmic rays. Temporal changes of intensities and energy spectra of solar protons with energy 100-500 MeV were obtained. The strong influence of interplanetary shock waves on the proton flux characteristics near the Earth was observed. Possible effects of solar proton transport in the vicinity of shock fronts are discussed to explain the observational data.  相似文献   
10.
Balloon measurements of cosmic rays were made practically every day at several locations of the former USSR and in Antarctica over a period of more than 30 years. These measurements provide a means for assessment and control of ionizing radiation at the altitudes from ground level up to 30-35 km.  相似文献   
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