竞争市场环境下发展供热系统的优化

V. Stennikov, O. Khamisov, A. Penkovsky
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引用次数: 7

摘要

本文旨在建立在竞争激烈的市场环境下发展供热系统运行问题的数学模型和方法。该领域新运作原则的形成受到单一系统内不同热经济设施所有者之间相互作用所产生的市场机制的制约。今天,热能市场由许多经营热能源和热网的不同所有制企业代表。显然,这种情况明确造成了热能市场参与者之间的利益冲突,集中供热参与者(热源 -热网-消费者)对生产可靠性、供热效率和质量的责任不平衡。合理解决这一问题,可以为发展中的热能市场确定最佳运行条件,并提高热能的技术、经济和能源效率。利用液压回路理论、非线性动态规划和二级规划等方法解决了这些问题。所进行的研究允许创建数学模型和方法,以优化高效供热系统的建设,组织其运行,确保在向消费者供热领域实现充分的节能潜力,同时考虑到热能市场所有参与者的利益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Developing Heat Supply System in Competitive Market Environment
The paper is aimed at working out the mathematical models and methods to solve the problems of operation of developing heat supply systems in a competitive market environment. The formation of new principles of functioning in this field is conditioned by the market mechanisms emerging due to the interaction between different owners of heat economy facilities within the single system. Today heat energy markets are represented by a great number of enterprises with different types of ownership that operate heat energy sources and heat networks. It is obvious that such a situation explicitly causes conflicts of interests among the heat energy market participants and unbalances the responsibility for production reliability, heat energy supply efficiency and its quality among the participants of centralized heat supply (heat sources – heat networks - consumers). A reasonable solution to this problem can make it possible to determine optimal conditions for operation of the developing heat energy market, and their implementation can increase technical, economic and energy efficiency of heat energy. These problems are solved by using the methods of hydraulic circuit theory, nonlinear dynamic programming and two level programming. The studies performed allowed the creation of mathematical models and methods for optimal construction of efficient heat supply systems, organization of their operation that ensure the realization of full energy saving potential in the field of heat supply to consumers, taking into account the interests of all participants of the heat energy market.
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