Solution of inverse heat transfer problem in condenser of a turbine unit with built-in heating unit

V. Zhukov, G. V. Ledukhovsky, M.D. Fomichev, А.N. Belyakov, M.A. Kuznetsov
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Abstract

For power plants reduction of heat losses is one of the main ways to save energy. Energy saving issue is one of the priority areas of the development of science, engineering, and technology in the Russian Federation. Efficiency upgrading of the equipment operation are associated with the condensers of turbine units, since more than 50 percent of the fuel energy is released into the environment with cooling water. The operating efficiency of a condenser with built-in heating beams significantly affects the vacuum in the condenser and, thus, the operating efficiency of the entire unit. Diagnostics of the condition and improvement of operating modes of the condenser of a turbine unit with a built-in heating unit is an urgent scientific and practical issue. To develop a model of a condenser with a built-in heating beam, the methodology of matrix formalization of the description of heat and mass transfer processes has been used. To solve the problem of diagnosing the condition of equipment, methods of least squares and mathematical programming have been used. Within the framework of the matrix formalization methodology, the authors have developed an approach to solve inverse problems of diagnosing and designing multi-flow heat exchange equipment considering the phase transition in coolants. The authors have obtained and analyzed solutions of the inverse problem from the point of view of diagnosing the state of heat exchange equipment using the example of a turbine unit condenser with a built-in heating beam. Analysis of the calculated results has shown an adequate description by the model of the standard data for the analyzed condenser. Analysis results have shown the possibility to use the model for runtime diagnosis of the condition of power equipment and the efficient use of energy resources due to preventing ineffective modes. The proposed approach allows us to formulate and solve inverse problems of diagnosing the state of equipment of condensing units for various purposes.
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带内置加热装置的汽轮机组冷凝器中反向传热问题的解决方案
对于发电厂来说,减少热损失是节约能源的主要方法之一。节能问题是俄罗斯联邦科学、工程和技术发展的优先领域之一。设备运行效率的提高与汽轮机组的冷凝器有关,因为 50% 以上的燃料能量是通过冷却水释放到环境中的。带有内置加热梁的凝汽器的运行效率会对凝汽器的真空度产生重大影响,进而影响整个机组的运行效率。对带有内置加热装置的汽轮机组凝汽器的状态进行诊断并改进其运行模式是一个紧迫的科学和实际问题。为了建立带内置加热梁的凝汽器模型,我们采用了矩阵形式化描述传热和传质过程的方法。为了解决设备状态诊断问题,使用了最小二乘法和数学编程方法。在矩阵形式化方法的框架内,作者开发了一种方法来解决诊断和设计多流换热设备的逆问题,其中考虑到了冷却剂的相变。作者以带有内置加热梁的汽轮机组冷凝器为例,从诊断热交换设备状态的角度出发,获得并分析了逆问题的解决方案。对计算结果的分析表明,模型对所分析冷凝器的标准数据进行了充分描述。分析结果表明,可以使用该模型对电力设备的运行状况进行诊断,并通过防止无效模式来有效利用能源资源。所提出的方法使我们能够制定和解决用于各种目的的冷凝机组设备状态诊断的逆问题。
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