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Numerical calculation of the radiation exposure from galactic cosmic rays at aviation altitudes with the PANDOCA core model

机译:用PANDOCA核心模型数值计算航空高度银河宇宙射线的辐射量。

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The increased radiation exposure at aviation altitudes is of public interest as well as of legal relevance in many countries. The dose rates that are elevated compared to sea level are mainly caused by galactic cosmic ray particles interacting with the atmosphere and producing a complex radiation field at aviation altitudes. The intensity and composition of this radiation field mainly depend on altitude, geomagnetic shielding, and primary particle intensity. In this work, we present a model based on Monte Carlo simulations, which retrospectively estimates secondary particle fluence as well as ambient dose equivalent rates and effective dose rates at any point in the atmosphere. This model will be used as the physical core in the Professional Aviation Dose Calculator (PANDOCA) software developed by the German Aerospace Center (Deutsches Zentrum für Luft- und Raumfahrt) for the calculation of route doses in aviation. The calculations are based on galactic cosmic ray spectra taking into account primary nuclei from hydrogen to iron by direct transport calculations of hydrogen and helium nuclei and approximating heavier nuclei by the number of protons equaling the corresponding atomic number. A comparison to experimental data recorded on several flights with a tissue equivalent proportional counter shows a very good agreement between model calculations and measurements.
机译:在航空高度上增加的辐射暴露不仅引起公众关注,而且在许多国家/地区都具有法律意义。与海平面相比,剂量率升高主要是由于银河系宇宙射线粒子与大气相互作用,并在航空高度产生了复杂的辐射场。该辐射场的强度和组成主要取决于高度,地磁屏蔽和一次粒子强度。在这项工作中,我们提出了一个基于蒙特卡洛模拟的模型,该模型回顾性地估计了次级粒子的注量以及大气中任何一点的等效剂量率和有效剂量率。该模型将用作由德国航空航天中心(Deutsches ZentrumfürLuft- und Raumfahrt)开发的专业航空剂量计算器(PANDOCA)软件的物理核心,以计算航空路线剂量。该计算基于银河系宇宙射线光谱,其中考虑了通过氢和氦原子核的直接输运计算从氢到铁的初级原子核,并通过等于相应原子数的质子数近似较重原子核。使用组织等效比例计数器与几次飞行中记录的实验数据进行比较,结果表明模型计算和测量之间的一致性很好。

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