模拟核电站机组紧急释放产物的分布情况

Viktoriia Biliaieva, L. Levchenko, Iryna Myshchenko, O. Tykhenko, Vitalii Kozachyna
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引用次数: 0

摘要

尽管核电厂的安全运行备受关注,但仍有可能发生放射性核素泄漏事故。这一点在乌克兰尤为突出,因为军事行动有可能导致核反应堆受损。在实验室条件下不可能对紧急释放放射性物质的产品分布进行研究。因此,预测事故发展的唯一工具就是放射性核素云的扩散模型。这项研究的目的是模拟核电站机组中紧急释放产品的分布情况,以便对事故发展情况进行实际评估。研究成果:建立了核电站排放产物分布数学模型,该模型考虑了排放产物的初始活度值、放射性粒子沉降速度、风速成分、放射性核素排放强度随时间的变化。在计算域形状复杂的条件下,考虑到排放产物扩散障碍物的存在,开发了解决建模边界值问题的技术。使用演化形式的速度势能方程可以加快计算速度。所选择的交替三角法分割方案允许在每个分割步骤中根据显式形式找到速度势能。这使得 CFD 模型的软件实施成为可能。排放云分布的可视化模型可以确定排放产物分布区任何地方的辐射情况。所开发的模型可以快速预测事故在空间和时间上的发展,从而可以在最短时间内采取措施保护人们免受辐射。结论:所获得的排放云传播模型及其可视化可确定事故发展过程中各种初始条件下的环境污染状况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MODELING THE DISTRIBUTION OF EMERGENCY RELEASE PRODUCTS AT A NUCLEAR POWER PLANT UNIT
Despite the fact that much attention is paid to the safe operation of nuclear power plants, there is a possibility of an accident with the release of radionuclides. This is especially true in Ukraine, where there is a threat of the damage to nuclear reactors as a result of military operations. It is impossible to research the distribution of products emergency releases radioactive substances in laboratory conditions. Therefore, the only tool for the development predicting of an accident is the modeling the spread of a radionuclides cloud. The purpose of the research is a modeling the distribution of emergency release products in a nuclear power plant unit, suitable for the operative assessment of a development an accident. Results of the research: The mathematical model of the distribution emission products of a nuclear power plant has been developed, which takes into account the value of the initial activity of emission products, the rate of the settling radioactive particles, the wind speed components, the intensity changes radionuclide emission over time. The technique for solving the boundary value problem of modeling in conditions of a complex shape of the computational domain, taking into account the presence of obstacles to the spread of emission products has been developed. The use of the velocity potential equation in evolutionary form allows us to speed up the calculation process. The chosen splitting scheme of an alternating-triangular method allows to find the speed potential according to the explicit form at each splitting step. This allowed software implementation of the CFD model. The visualized models of the emission cloud distribution allow to determine the radiation situation in any place of the emission product distribution zone. The developed model makes it possible to quickly predict the development of an accident in space and time, which makes it possible to take measures to protect people from exposure in the shortest possible time. Conclusions: The obtained emission cloud propagation models and their visualization make it possible to determine the state of environmental pollution under various initial conditions during the development of the accident.
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