STRUCTURAL-FUNCTIONAL MODEL OF THE MECHANISM FOR REGULATING ENVIRONMENTAL SAFETY IN EMERGENCY SITUATIONS OF MILITARY-TECHNOGENIC ORIGIN

V. Romaniuk, Olena Andriiuk, N. Volodchenkova
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Abstract

Purpose. Violation of the technological mode of operation potentially hazardous objects and high-risk objects, this is caused by joint military operations, it causes a significant increase in the risks of man-made disasters with large-scale negative consequences due to the threat of destruction of such objects.To ensure stable management of natural and man-made safety in these conditions, a structural and logical model of natural and man-made safety management has been developed under different conditions of application of the Armed Forces of Ukraine ensuring minimal risks and threats of emergencies of military-technological origin.Findings. The functioning of the management system for natural and technogenic safety is carried out by the following models:- model of natural and man-made safety management in the area of joint forces operations in a stable mode;- model of natural and man-caused safety management in the area of joint forces operations in the state of emergency of natural or man-made origin;- a model of natural and man-made safety management in the area of joint forces operations in the state of emergency of military-technogenic origin.This regulation should be carried out through specific mechanisms, which include: 1 - legislative and regulatory; 2 - licensed; 3 - economic.Severe disturbance of unstable equilibrium natural and industrial Geosystems, which was formed in the Eastern region, as a result of the accumulation of imbalances in nature management over the years of totalitarianism, with the decline of industrial production due to the armed confrontation, led to the development of catastrophic situations.Practical implications. Rehabilitation of areas at a time when emergencies and disasters have occurred and have been eliminated, should also be carried out by implementing environmental rehabilitation programs of a certain level in accordance with the scale of the latter and projected duration of exposure and their effects on the environment and living conditions of the population.Practical implications. A model of the index-indicator approach has been developed for the further development of a structural and functional model of the mechanism for regulating natural and technogenic safety during emergencies of military and technogenic origin. The model creates the prerequisites for the development of effective procedures for the state management of natural and technogenic safety in emergency situations of military and technogenic origin.
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军事技术来源紧急情况下环境安全调节机制的结构-功能模型
目的。违反操作技术模式的潜在危险物体和高风险物体,这是由联合军事行动造成的,由于这些物体受到破坏的威胁,导致发生具有大规模负面后果的人为灾害的风险显著增加。为了确保在这些条件下稳定地管理自然和人为安全,在乌克兰武装部队的不同应用条件下制定了自然和人为安全管理的结构和逻辑模型,确保将军事技术突发事件的风险和威胁降至最低。的功能自然和工艺安全管理系统是由以下模型:模型的自然和人为的安全管理领域的联合部队在一个稳定的运营模式;-模型的自然和人为安全管理领域的联合部队在自然或人为来源的紧急状态;——自然和人为的模型安全管理领域的联合部队行动的紧急状态military-technogenic来源。这一规定应通过具体的机制来实施,其中包括:1 -立法和监管;2 -持牌;3 -经济。由于多年来极权主义在自然管理方面的不平衡积累,加上武装对抗导致工业生产下降,导致东部地区形成的不稳定平衡的自然和工业地球系统受到严重干扰,导致灾难性局势的发展。实际意义。在发生突发事件和灾害并已消除的情况下,还应当根据灾害的规模、预计暴露时间及其对环境和居民生活条件的影响,实施一定程度的环境恢复工程。实际意义。为了进一步发展在军事和技术原因的紧急情况期间调节自然和技术安全的机制的结构和功能模型,已经拟订了一个指数-指标方法模型。该模式为在军事和技术原因紧急情况下制定国家管理自然和技术安全的有效程序创造了先决条件。
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