确定矿山救援力量和救援手段

Ya. Krupka, M. KRALYuK, V. Kostenko, O. Zavialova, T. Kostenko
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摘要

目的。本文的目的是研究煤矿救援服务和质量管理的作战行动取得高成效的条件,以便及时、正确地选择煤矿消防的方法、力量和手段,并根据火灾类型(外生、内生)进行作战机动。燃烧中心的起源地点、规模、瓦斯情况、事故中遇难人数及其居住地等。在研究过程中,为了解决复杂的任务,使用了一般和特殊的方法,特别是:归纳法(在收集、系统化和处理信息进行研究的阶段)和演绎法(在理论认识问题的过程中),系统分析法,比较分析法,定义分析法;经济分析、经济控制论的可能性和采矿作业策略制定中的最优管理理论等。合理消防救援行动的经济学和数学模型的不同之处在于,首次将其管理视为一个经济范畴,并将应急响应过程及其后果视为一个极端(优化)问题,通过计算实验和工程分析来解决。基于积分目标函数的参数不是控制参数,而是与后一种确定的数学模型有关,提出了一种求解救援单位力量和手段优化极值问题的算法。采矿中的计算方法,包括用于确保救援行动的最佳组织的方法,需要改进,以提高准确性并简化其算法,以减少数学模型中人工计算的份额。首次在最优管理综合质量准则理论的一般方法规定的基础上,在此基础上建立了合理开展难处理地下火灾清理救援工作的经济数学模型。实际意义。建立合理的经济数学模型,可以及时、正确地选择煤矿火灾扑救的方法、力量和手段,最大限度地减少经济损失,提高应急响应的效率和安全性。关键词:事故,煤矿,矿山,综合质量标准,火灾,经济数学模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DETERMINATION OF FORCES AND MEANS OF RESCUE MINING RESCUE
Purpose. The purpose of this article is to study the conditions for achieving high results of operational actions of rescue services and quality management, which will allow timely and correct choice of methods, forces and means of firefighting in coal mines and carry out operational maneuvers depending on the type of fire (exogenous, endogenous). places of origin of combustion centers, its scale, gas situation, number of people captured by the accident and their places of residence, etc. Methodology. During the research, to solve the tasks, the complex used general and special methods, in particular: methods of induction (at the stage of collecting, systematizing and processing information for research) and deduction (in the process of theoretical understanding of the problem), system-analytical , comparative analysis, method of analysis of definitions; economic analysis, possibilities of economic cybernetics and the theory of optimal management in the development of tactics for mining operations, etc. Findings. Economic and mathematical model of rational rescue operations in firefighting differs in that for the first time their management is considered as an economic category, and the process of emergency response and their consequences is presented as an extreme (optimization) problem, which is solved using computational experiments and engineering analysis. An algorithm for solving the extreme problem of optimizing the forces and means of rescue units, based on the fact that the arguments of integral objective functions are not control parameters, but related to the latter determined mathematical model. Methods of calculations in mining, including those used to ensure optimal organization of rescue operations, need to be improved to improve accuracy and simplify their algorithmization in order to reduce the share of manual calculations in mathematical models. Originality. For the first time, on the basis of general methodical provisions of the theory of optimal management integrated quality criteria and on their basis economic and mathematical model of rational conducting of rescue works on liquidation of difficult underground fires are developed. Practical implications. Economic and mathematical model of rational rescue operations will allow timely and correct selection of methods, forces and means of fire fighting in coal mines, minimize economic losses, increase the efficiency and safety of emergency response. Keywords: accident, coal mine, mining works, integrated quality criteria, fire, economic-mathematical model.
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