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11.
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
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采用了直接过滤的Navier-Stokes(N-S)方程组对高速可压缩湍流进行研究。针对高超声速湍流的非线性流动特性,对N-S方程直接过滤推导了大尺度湍流流场的控制方程,更精确地反映高速湍流的可压缩性,建立了可压缩湍流的大涡模拟TDM模型。使用传统的Smagorinsky模型的非线性推广,采用基于非Favre过滤的超声速可压缩湍流的大涡模拟模型,应用Caylay-Hamilton定理,建立可压缩湍流大涡模拟的非线性亚格子模型,并发展为动力学模式,模型中的两个常数通过当地流场动态的确定,消除了可调经验常数的影响。针对构造的高超声速湍流大涡模型开发相应的高效并行算法。 相似文献
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