利用地球空间图像进行水资源水文生态监测的模拟数学建模

V. Yakymchuk
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摘要

水生生态系统的建模是解决许多实际问题的基础。这些问题涉及到提高水体生产力、改善水体水质和在集水区实施水保护措施。本研究将地球空间影像资料与陆地水质生态指数数值相结合,对水生生态系统状况进行评价,为评价水污染参数提供了充分的数据。在水资源消耗与再生平衡的基础上,探讨了资源导向型自然管理场景的构建问题。说明了数学建模在生态监测系统中的作用和地位,即过程情景管理的信息技术可以维持水资源消耗和再生产的平衡。已经建立了基辅水库系统的综合动态模型,重点是建立水消耗和再生的平衡。采用系统的方法建立模型,其中用水的经济目标依赖于生态状态。根据动态平衡原理,假定复杂系统在可变外力作用下具有动态平衡的愿望,该方法的创建提出了相互依存过程系统自适应平衡的通用模型。作为使用系统管理方法的一个例子,考虑在用水量和用水量之间找到平衡的问题。这种通过环境措施维持的平衡,用生态和经济系统的概念模型来表示。利用水资源影响自适应平衡模型进行了模拟实验。这种计算机控制技术的主要优点是可以广泛地进行模拟实验,并从符合可持续发展目标指导方针的一系列可能的过程方案中进行选择。
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Simulation mathematical modeling of hydroecological monitoring of water resources using space images of the Earth
Modeling of aquatic ecosystems is the basis for solving many practical problems. These problems are related to increasing the productivity of water bodies, improving the quality of water in them and the implementation of water protection measures in catchment areas. The study is based on the integration of materials from space images of the Earth and terrestrial values of the ecological index of water quality to assess the state of aquatic ecosystems, which provides sufficient data to assess the parameters of water pollution. The issues of construction of resource-oriented scenarios of nature management based on the balance of water consumption and reproduction are considered. The role and place of mathematical modeling in the system of ecological monitoring are shown, namely that the information technology of process scenario management allows to maintain the balance of water consumption and reproduction of water resources. Integrated dynamic models of Kyiv Reservoir systems have been built, focused on establishing a balance of water consumption and reproduction. A systematic approach was used to build the models, in which the economic goals of water consumption are made dependent on the ecological state. In accordance with the principle of dynamic balance, which postulates the desire of a complex system to dynamic equilibrium with variable external forces, the creation of the method proposed a universal model of adaptive balance of the system of interdependent processes. As an example of using a systematic management methodology, consider the problem of finding a balance between the volume of water consumption and the volume of their reproduction. This balance, maintained through environmental measures, is represented by a conceptual model of the ecological and economic system. Simulation experiments with the model of adaptive balance of water resources impacts were performed. The main advantage of such computer control technologies is the wide possibility to carry out simulation experiments and choose from an ensemble of possible process scenarios that meet the target guidelines for sustainable development.
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