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A mathematical model of an existing gas-steam combined heat and power plant for thermal diagnostic systems

机译:现有的用于热诊断系统的燃气-蒸汽联合热电厂的数学模型

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Systems of thermal diagnostic of an operation require computational tools, including mathematical models. These models should have a simple structure and short computing time. Therefore, often analytical-empirical models are used which encompass both mass and energy balances as well as additional empirical functions whose coefficients are estimated on the basis of measurement results. As a result, changing technical conditions of modelled machines are taken into account. This paper presents the simulation model of an existing gas-steam combined heat and power plant, which has a modular design and is divided into three partial models of: the gas turbine unit with rated power of 125.4 MW, the double-pressure heat recovery steam generator and the steam-water cycle with steam turbine rated 65 MW. The simulation models allow to calculate non-measured operating parameters and energy assessment indicators. They also have the capability of adapting to the changing technical conditions of the modelled machines. The developed models were validated by the use of measurements. Model predictive quality was verified with the determination factor and root mean square error. The models were also used to simulate the behavior of the analyzed gas-steam CHP plant under different operating conditions. Exemplary calculations have been presented. (C) 2018 Elsevier Ltd. All rights reserved.
机译:作业的热诊断系统需要包括数学模型在内的计算工具。这些模型应具有简单的结构和较短的计算时间。因此,经常使用分析经验模型,该模型既包含质量平衡,也包含能量平衡,还包含其他经验函数,其经验系数是根据测量结果估算的。结果,考虑了建模机器的变化技术条件。本文介绍了现有的燃气-蒸汽联合热电厂的仿真模型,该模型具有模块化设计,分为以下三个部分模型:额定功率为125.4 MW的燃气轮机机组,双压热回收蒸汽发电机和额定65 MW汽轮机的蒸汽-水循环。仿真模型允许计算未测量的运行参数和能量评估指标。它们还具有适应建模机器不断变化的技术条件的能力。所开发的模型通过使用测量进行了验证。通过确定因子和均方根误差验证模型预测质量。该模型还被用来模拟所分析的燃气-蒸汽热电联产设备在不同运行条件下的行为。已经提出了示例性计算。 (C)2018 Elsevier Ltd.保留所有权利。

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