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21.
神舟2号大气密度探测器的探测结果(Ⅰ)日照和阴影区域热层大气密度变化 总被引:1,自引:2,他引:1
选用了神舟2号(SZ-2)大气密度探测器在2001年2—4月间的探测数据,进行日照和阴影区域热层大气密度变化的探讨.结果表明:在高度410km附近,日照和阴影区域大气密度变幅为2—3倍,变幅的大小与地磁活动程度呈负相关关系.日照面大气密度峰区位于星下点地方时1400—1500LT的纬度处,峰值大小与太阳活动程度呈正相关关系.阴影面大气密度谷区位于星下点地方时0400-0500的纬度处,同时在±10°纬度区域中还出现了阴影面峰区. 相似文献
22.
On 14 October 1999, the Chinese-Brazil earth resource satellite (CBERS-1) was launched in China. On board of the satellite there was an instrument designed at Peking University to detect the energetic particle radiation inside the satellite so the radiation fluxes of energetic particles in the cabin can be monitored continuously. Inside a satellite cabin, radiation environment consists of ether penetrated energetic particles or secondary radiation from satellite materials due to the interactions with primary cosmic rays.Purpose of the detectors are twofold, to monitor the particle radiation in the cabin and also to study the space radiation environment The data can be used to study the radiation environment and their effects on the electronics inside the satelhte cabin. On the other hand, the data are useful in study of geo-space energetic particle events such as solar proton events, particle precipitation and variations of the radiation belt since there should be some correlation between the radiation situation inside and outside the satellite.The instrument consists of two semi-conductor detectors for protons and electrons respectively. Each detector has two channels of energy ranges. They are 0.5-2MeV and ≥2MeV for electrons and 5-30MeV and 30-60MeV for protons. Counting rate for all channels are up to 104/(cm2@s)and power consumption is about 2.5 W. There are also the additional functions of CMOS TID (total integrated dose) effect and direct SEU monitoring. The data of CBMC was first sent back on Oct. 17 1999 and it's almost three years from then on. The detector has been working normally and the quality of data is good.The preliminary results of data analysis of CBMC not only reveal the effects of polar particle precipitation and radiation belt on radiation environment inside a satellite, but also show some important features of the geo-space energetic particle radiation.As one of the most important parameters of space weather, the energetic charged particles have great influences on space activities and ground tech nology. CBMC is perhaps the first long-term on-board special equipment to monitor the energetic particle radiation environment inside the satellite and the data it accnmulated are very useful in both satellite designing and space research. 相似文献
23.
《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2020,65(1):435-445
Strong earthquakes have an impact on the regional thermal radiation background, which has been both observed and confirmed. This effect produces anomalies in the thermal radiation background (TRBA) and increases the difficulty of extracting a thermal radiation anomaly (TRA) that is associated with an earthquake occurring during the same time period. The extraction and identification of such anomalies has been ignored by previous studies. In this study, we investigate the time-frequency analysis (TFA) method, together with the wavelet filtering of the Daubechies method and the relative power spectrum analysis of the Fourier Welch method to extract and analyse the TRBA caused by the 2008 Wenchuan Ms 8.0 earthquake and the TRA of the 2013 Minxian-Zhangxian Ms 6.6 earthquake using data concerning the brightness temperature of a black body (TBB) from the Fengyun-2 series of geostationary meteorological satellites developed by China. The result showed that this method can effectively extract and analyse the TRBA caused by the Wenchuan earthquake and the TRA of the Minxian-Zhangxian earthquake form a complex background environment. Furthermore, we discussed the impact of the earthquake on the TRBA and segmented the process. The impact is mainly reflected by three aspects; the characteristic period of the TRBA changes, the TRBA occurs at the same time every year, which is identical to the time at which the earthquake anomaly occurred, and the impact process is in stages. We also summarized the correlation between the characteristic parameters of a TRA and the regional thermal radiation background, geography, and climatic factors. 相似文献
24.
涡扇发动机排气系统红外特征 总被引:11,自引:4,他引:11
采用反向蒙特卡罗法(Reverse Monte-carlo,简称RMC)结合窄带模型计算了模型涡扇发动机(不带加力)排气系统的红外辐射强度。考虑了金属壁面的发射和反射以及燃气中CO2,CO和H2O等组分的吸收、发射和透射,组分的吸收系数由NASA SP3080数据库获得,并对判断射线归宿的过程进行了改进,开发了计算程序。实验测量了模型涡扇发动机排气系统的中波红外光谱辐射强度及其空间辐射强度分布。结果表明:计算得到的3~5μm波段内的光谱辐射强度以及空间辐射强度分布与实验值吻合较好,最大误差为10%左右,本文的计算方法能比较准确地反映涡扇发动机排气系统在非加力状态下的中波红外辐射特征。 相似文献
25.
隐身最重要的技术之一是评估飞行器被红外探测器接收到的红外辐射强度。本文针对飞行器表面红外辐射特征计算的问题提出一个方法。首先通过分析飞行器表面气动加热、发动机热部件等主要热源,建立了CFD计算模型并获得了飞行表面的温度场。并结合反向蒙特卡洛方法建立求解飞行器表面复杂几何外形的红外辐射模型。通过数值模拟,比较了飞行器主要部件在水平和侧向上红外辐射强度所占的比重;并针对飞行器主要部件冷却对红外辐射强度的影响效果进行了研究。计算结果表明:在水平方向降低飞行器头部、垂尾、机翼部件表面温度10K能降低红外辐射强度大于8%;而在侧方向降低飞行器头部、垂尾、机翼部件表面温度10K能降低红外辐射强度小于8%。计算结果可为隐身设计提供参考。 相似文献
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28.
以降低涡扇发动机排气系统红外辐射为目的,针对某型涡扇排气系统构建1/3缩比模型,采用实验的方法比较了中心锥有/无冷却的排气系统喷流温度场和红外辐射场,验证了中心锥冷却结构能够大幅度降低涡扇发动机排气系统尾向红外辐射强度.研究结果表明:中心锥表面在外涵气体冷却下温度降低,同时尾焰核心温度也降低.当涵道比为0.3时,在0°~10°范围内,气膜冷却中心锥体排气系统红外辐射降低24%~32%;在20°~90°范围内,红外辐射强度降低0.8%~2.1%.当涵道比增加到0.8时,0°方向的红外辐射强度降低60%;20°~90°范围内的红外辐射强度降低了33%~51%. 相似文献
29.
针对氢氧火箭发动机羽烟紫外辐射特性参数分析,提出一种基于紫外CCD(change coupled device)相机采集的单幅辐射图像,同时反演羽烟内紫外辐射源项和吸收系数的方法.该方法将羽烟简化为发射-吸收轴对称介质,通过对辐射图像数据进行Able变换得到三维介质内辐射强度分布,利用最小二乘法将反演问题转化为使计算得到的与Abel变换得到的辐射强度误差最小的最优化问题,然后利用共轭梯度法求解该最优化问题.通过在求解正问题得到的准确值的基础上添加随机噪声,模拟辐射图像数据,分析了测量误差对算法反演精度的影响.结果表明:该算法对测量误差不敏感,能够准确的重建羽烟内的辐射源项和吸收系数分布. 相似文献
30.
空间环境下的有机热控涂层 总被引:6,自引:3,他引:6
本文综述了国外在空间有机热控涂层领域中的研究工作和试验,着重分析了空间极端环境中紫外光辐照和原子氧侵蚀这两大因素对有机热控涂层的影响。 相似文献