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Techno-Economic Optimization of Electricity and Heat Production in a Gas-Fired Combined Heat and Power Plant With a Heat Accumulator

机译:带有蓄热器的燃气联合热电厂的电和热生产的技术经济优化

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摘要

At present, power systems based on gas turbines are mainly used for electricity and heat generation. Gas turbines are used in industrial and institutional applications due to high-temperature exhaust, which can be used for heating, drying, or process steam production. The combined cycle gas turbine plants are a mature technology with high reliability and offering rapid response to changing demand for electricity and heat. The combination of a gas turbine with a heat recovery system and a heat accumulator makes the combined heat and power (CHP) plant a flexible unit. The paper presents the optimization tool for the planning process of electricity and heat production in the gas-fired CHP plant with a heat accumulator. The detailed mathematical model of the analyzed cogeneration plant was developed with the EBSILON® Professional and verified based on the results from on-site tests and warranty measurements. The implemented optimization algorithm is used to maximize the profits of the CHP plant operation. The presented solution is based on an evolutionary algorithm. The optimization algorithm is applied to the production determination for the day-ahead planning horizon, with 1-h time step. The obtained results show that the developed optimization model is a reliable and efficient tool for production planning in a CHP plant with gas turbines. The comparative exergy analysis for different technologies of heat recovery from gas turbine exhaust gases was performed to evaluate the quality of the energy conversion process in the CHP plant.
机译:目前,基于燃气轮机的电力系统主要用于发电和供热。燃气轮机由于高温排气而用于工业和机构应用,可用于加热,干燥或工艺蒸汽生产。联合循环燃气轮机厂是一项成熟的技术,具有很高的可靠性,可以快速响应不断变化的电力和热需求。带有热回收系统的燃气轮机和蓄热器的组合使热电联产(CHP)设备成为灵活的装置。本文提出了一种优化工具,用于规划带有蓄热器的燃气热电联产厂的电力和热量生产过程。使用EBSILON®Professional开发了分析后的热电厂的详细数学模型,并根据现场测试和保修测量的结果进行了验证。实施的优化算法用于最大化热电联产工厂运营的利润。提出的解决方案基于进化算法。将优化算法应用于以1小时为时间步长的日程计划生产范围的生产确定。获得的结果表明,所开发的优化模型是具有燃气轮机的热电联产工厂进行生产计划的可靠而有效的工具。对从燃气轮机废气中回收热量的不同技术进行了比较火用分析,以评估热电联产厂的能量转换过程的质量。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2020年第2期|29-43|共15页
  • 作者

  • 作者单位

    Department of Production Economics PGE Energia Clepła S. A. Podmiejska 44-207 Rybnlk Poland Faculty of Energy and Environmental Engineering Institute of Thermal Technology Silesian University of Technology Konarskiego 22 44-100 Gliwice Poland;

    Faculty of Energy and Environmental Engineering Institute of Thermal Technology Silesian University of Technology Konarskiego 22 44-100 Gliwice Poland;

    Faculty of Mechanical Engineering Department of Power Systems and Environmental Protection Facilities AGH University of Science and Technology Mickiewicza 30 Avenue 30-059 Krakow Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    energy conversion/systems; energy systems analysis; heat energy generation/storage/transfer; power (co-)generation;

    机译:能量转换/系统;能源系统分析;热能的产生/存储/转移;发电(热电联产);
  • 入库时间 2022-08-18 05:18:53

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