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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Simulation of the radon and radon progeny detection by silicon photodiodes.
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Simulation of the radon and radon progeny detection by silicon photodiodes.

机译:硅光电二极管对the和ra子代检测的模拟。

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The use of silicon photodiodes for field radon measurements requires the utilization of measuring cells for protection against environmental electromagnetic fields. It is very important to study and optimize the impact of geometry conditions (dimensions of the measuring cell) on the photodiode detection efficiency that can be reduced more than 10-30 times. Two models (for volume-distributed nuclides around the detector and for radon progeny deposited on the diode surface radon progeny) were applied for simulation of the photodiode detection in measuring cells of different sizes. Their use allows an optimal choice of the most appropriate cell regarding the measurement conditions. Thus, for soil gas measurements cells we use a cell of 3.6 cm in diameter by 20 cm in height; for determination of the radon exhalation rate we use a cell of 16 cm in diameter by 14 cm in height; and for measurements in dwellings and large spaces we use cells larger than 20 cm and lower than 4 cm.
机译:将硅光电二极管用于场ra测量需要利用测量单元来防止环境电磁场。研究和优化几何条件(测量单元的尺寸)对光电二极管检测效率的影响非常重要,该影响可以降低10-30倍以上。两种模型(用于探测器周围体积分布的核素和沉积在二极管表面ra子体上的ra子体)被用于模拟不同尺寸的测量单元中的光电二极管探测。它们的使用允许根据测量条件最佳选择最合适的单元。因此,对于土壤气体测量池,我们使用直径3.6厘米×高20厘米的池;为了确定the的呼出率,我们使用直径为16厘米,高度为14厘米的电池;对于在住宅和大空间中的测量,我们使用大于20 cm且小于4 cm的单元。

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