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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Prediction of frequency and exposure level of solar particle events.
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Prediction of frequency and exposure level of solar particle events.

机译:预测频率和暴露水平太阳粒子事件。

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For future space missions outside of the Earth's magnetic field, the risk of radiation exposure from solar particle events (SPEs) during extra-vehicular activities (EVAs) or in lightly shielded vehicles is a major concern when designing radiation protection including determining sufficient shielding requirements for astronauts and hardware. While the expected frequency of SPEs is strongly influenced by solar modulation, SPE occurrences themselves are chaotic in nature. We report on a probabilistic modeling approach, where a cumulative expected occurrence curve of SPEs for a typical solar cycle was formed from a non-homogeneous Poisson process model fitted to a database of proton fluence measurements of SPEs that occurred during the past 5 solar cycles (19-23) and those of large SPEs identified from impulsive nitrate enhancements in polar ice. From the fitted model, we then estimated the expected frequency of SPEs at any given proton fluence threshold with energy >30 MeV (Phi(30)) during a defined space mission period. Analytic energy spectra of 34 large SPEs observed in the space era were fitted over broad energy ranges extending to GeV, and subsequently used to calculate the distribution of mGy equivalent (mGy-Eq) dose for a typical blood-forming organ (BFO) inside a spacecraft as a function of total Phi(30) fluence. This distribution was combined with a simulation of SPE events using the Poisson model to estimate the probability of the BFO dose exceeding the NASA 30-d limit of 250 mGy-Eq per 30 d. These results will be useful in implementing probabilistic risk assessment approaches at NASA and guidelines for protection systems for astronauts on future space exploration missions.
机译:未来的地球以外的太空任务磁场,辐射暴露的风险从太阳粒子事件(spe)舱外活动(eva)或轻保护车辆时是一个大问题辐射防护设计包括确定足够的防护要求宇航员和硬件。spe的频率是由太阳的强烈影响调制,SPE事件本身混乱的本质上。建模方法,累积的预期发生曲线spe的一个典型的太阳能周期从一个非齐次泊松成立流程模型拟合到一个数据库的质子spe期间发生的影响测量结果过去5(19号)和太阳周期大spe确定硝酸的冲动增强在极地冰。然后我们估计spe的期望频率在任何给定的质子能量密度阈值与能量> 30兆电子伏(φ(30))中定义的太空任务时期。观察到在太空时代被广泛安装能源范围扩展到GeV,随后用来计算mGy的分布典型的等效剂量(mGy-Eq)造血器官(拍频振荡器)飞船内总φ(30)影响的函数。分布与模拟相结合SPE使用泊松模型估计的事件拍频振荡器剂量超过的概率美国国家航空航天局30 d 250 mGy-Eq每30 d。这些的极限结果将有助于实现概率风险评估方法在NASA为保护系统和指导方针宇航员在未来的太空探索任务。

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