COMPLEX ASSESSMENT OF POLLUTION ZONES IN EXTREME SITUATIONS AT ENERGY FACILITIES

V. Biliaieva, I. Kalashnikov, O. Berlov, V. Kozachyna, O. Tymoshenko
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Abstract

Problem statement. The task of forecasting damage zones under various types of man-made load in the event of an extreme situation at a gas station is considered. Comprehensive forecasting includes the determination of areas of chemical, thermal and mechanical contamination in the event of an extreme situation at a gas station. The purpose of the article. Development of a theoretical toolkit and a package of programs for complex forecasting of chemical, thermal and chemical environmental pollution zones in the event of an extreme situation at a gas station. Methodology. Forecasting of zones of chemical, thermal and mechanical pollution of the environment in the event of an extreme situation at a gas station uses the fundamental equations of the mechanics of a solid environment: the mass transfer equation is used to calculate zones of chemical pollution; the energy equation is used to determine the zones of thermal pollution of the atmospheric air; Newton's second law is used to calculate mechanical contamination zones. Integration of modeling equations is carried out numerically. A specialized package of programs for comprehensive forecasting of environmental pollution has been created. Scientific novelty. A specialized package of programs based on developed numerical models is proposed for the assessment of chemical, thermal and mechanical pollution zones that arise in the event of an extreme situation at a gas station. On the basis of the developed numerical models, an assessment of complex environmental pollution during an extreme situation at a gas station in the city of Dnipro was carried out. Practical significance. The developed numerical models are implemented in the form of a package of application programs with a wide working range. The program package is focused on solving problems in the field of environmental safety and occupational health and safety. Determining the zones of chemical, thermal and mechanical pollution of the environment with the help of the developed program package will be important in the development of the plan for localization and liquidation of emergency situations and accidents. Conclusions. An effective tool for theoretical analysis of pollution zones formed during an extreme situation at gas stations has been created. The results of computational experiments are presented.
能源设施极端情况下污染区的复杂评估
问题陈述。本文考虑的任务是预测加油站发生极端情况时各种人为负荷下的损坏区域。综合预报包括确定加油站发生极端情况时的化学、热和机械污染区域。文章的目的开发理论工具包和程序包,用于在加油站出现极端情况时对化学、热和化学环境污染区域进行综合预报。方法论。预测加油站发生极端情况时的化学、热和机械环境污染区域使用固体环境力学的基本方程:质量传递方程用于计算化学污染区域;能量方程用于确定大气热污染区域;牛顿第二定律用于计算机械污染区域。模型方程的整合以数值方式进行。为全面预报环境污染建立了专门的程序包。科学新颖性。在已开发的数值模型基础上,提出了一套专门的程序包,用于评估加油站发生极端情况时产生的化学、热和机械污染区。在开发的数值模型基础上,对第聂伯罗市加油站极端情况下的复杂环境污染进行了评估。实际意义。开发的数值模型以应用程序包的形式实施,具有广泛的工作范围。该程序包主要用于解决环境安全和职业健康与安全领域的问题。利用开发的程序包确定环境的化学、热和机械污染区域,对于制定紧急情况和事故的定位和清理计划非常重要。结论已开发出一种有效工具,用于对加油站极端情况下形成的污染区进行理论分析。本文介绍了计算实验的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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