Development of Model for Assessing the Level of Multipurpose Water Use and Protection by Economic-Mathematical Modeling

R. Rohatynskyi, N. Garmatiy, H. Humeniuk, N. Marynenko
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Abstract

The impact of industrial waste and enterprises’ emissions on the chemical composition of water, in particular, the content of phosphate ions in it and the main physicochemical indicators of water (dissolved oxygen, hydrogen index and water temperature) are determined. A model for assessing the level of multipurpose water use and protection using tools of economic-mathematical modeling – fuzzy set theory implemented in MATLAB software is developed. Factors of this model include level of production improvement, adherence to technological discipline; level of average content of phosphate concentration and physicochemical parameters of the water; full disposal of household, agricultural and industrial waste; rationing of water supply and drainage, rationing of maximum permissible concentration of various substances in the waters for drinking, fishery and other purposes; zero waste water discharge, recirculating water supply; imposing penalties on pollution, littering and water depletion up to the closure of enterprises, factories workshops, complexes-pollutants in accordance with the legislation in force; phytomelioration; subsoil tillage, contour farming. Terms for the linguistic assessment of selected factors of the level of multipurpose water use and protection in hydroecosystems based on fuzzy logic theory and the ranges of their changes are proposed. The rules base for the developed model is formed. Input and output parameters defuzzification is carried out according to the “center of gravity” of the Mamdani module of the MATLAB software. The level of multipurpose water use and protection is recorded at 80%, which corresponds to the high level (from 70% to 100%) of the scale and can be improved by increasing the level of each factor of the model. It is established that, when supplementing the input parameters and the rule base, the developed model can be applied to specific industrial enterprises. Keywords—hydro-ecosystem, fuzzy set theory, model for assessing the level of multipurpose water use and protection
基于经济数学模型的综合用水保护水平评价模型的建立
测定工业废弃物和企业排放对水体化学成分的影响,特别是对水体中磷酸盐离子的含量和水体的主要理化指标(溶解氧、氢指数、水温)的影响。利用经济-数学建模-模糊集理论在MATLAB软件中实现,建立了综合用水保护水平评价模型。这种模式的因素包括生产水平的提高,对技术纪律的坚持;磷酸盐平均含量水平及水体理化参数;全面处理家庭、农业和工业废物;给排水配给制,饮用水、渔业和其他用水中各种物质的最大允许浓度配给制;零废水排放,循环水供应;依照现行法律,对污染、乱扔垃圾和耗水行为进行处罚,直至关闭污染企业、工厂、车间和综合设施;植物改良;底土耕作,等高线耕作。提出了基于模糊逻辑理论的水文生态系统多用途用水和保护水平选择因子的语言评价术语及其变化范围。建立了模型的规则库。根据MATLAB软件Mamdani模块的“重心”对输入输出参数进行去模糊化。多用途用水和保护水平记录为80%,对应于尺度的高水平(从70%到100%),可以通过增加模型各因子的水平来提高。通过对输入参数和规则库的补充,建立的模型可以应用于具体的工业企业。关键词:水文生态系统,模糊集理论,综合利用与保护水平评价模型
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