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Modeling of the Shuttle tissue-equivalent proportional counters using computer-automated design techniques and radial frequency distributions

机译:使用计算机自动化设计技术和径向频率分布建模梭组织 - 当量比例计数器

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A higher fidelity shield model and response model have been developed for the Shuttle TEPC. The shield model was built using a CAD package in conjunction with a ray tracer. The response model considers the spatial restriction on the mean-energy imparted and the variance for direct particle effects and combines the radial distribution of the electron energy and flux about incoming ions with the distribution of electron frequencies from Monte Carlo simulations. The latter model accounts for secondary electrons entering the sensitive area of the TEPC. The new models are compared against measurements of a variety of shielding depths of aluminum and polyethylene that were acquired on the Shuttle during STS-81 and STS-89. Good agreement is obtained between the models and the measurements for trapped proton effects.
机译:为班车TEPC开发了更高的保真屏蔽模型和响应模型。屏蔽模型是使用CAD封装与光线示踪剂一起建造的。响应模型考虑了对平均能量的空间限制和直接颗粒效应的方差,并将电子能量和通量的径向分布与来自蒙特卡罗模拟的电子频率分布相结合。后一种型号占进入TEPC敏感区域的二级电子。将新模型与在STS-81和STS-89期间在梭子中获得的各种屏蔽深度的测量。在模型和捕获质子效果的测量之间获得了良好的一致性。

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