首页> 外文会议>2003 ASME(American Society of Mechanical Engineers) Turbo Expo; Jun 16-19, 2003; Atlanta, Georgia >ANALYSIS OF CYCLE CONFIGURATIONS FOR THE MODERNIZATION OF COMBINED HEAT AND POWER PLANT BY FITTING A GAS TURBINE SYSTEM
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ANALYSIS OF CYCLE CONFIGURATIONS FOR THE MODERNIZATION OF COMBINED HEAT AND POWER PLANT BY FITTING A GAS TURBINE SYSTEM

机译:匹配燃气轮机系统的热电联产现代化改造循环结构分析

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The application of a gas turbine generally allows to increase the number of possible configurations of cogenerated heat and electrical power systems, which became a significant substitute for classic, coal-fired power plants. They are characterized by better thermodynamical, economical, ecological and operating indexes. Gas turbine units are also the best option for the modernization of existing power plants. This paper discusses the effectiveness of various technological configurations with gas turbines, which are to be applied during modernization projects of already existing conventional combined heat and power plants. In the analysis enthalpy and entropy methods were applied. Algorithms of the entropy method allow to determine the entropy generation in each section of a combined heat and power (CHP) plant. Several criteria were taken into consideration while analyzing the effectiveness of technological cycle configurations with gas turbines. These include the energy effectiveness, the efficiency of the HRSG and the steam cycle, the efficiency of the whole thermal electric power station, the exergetic efficiency of the HRSG and the steam cycle, and the fuel efficiency index. It was assumed that gas turbines operate under their nominal conditions. The composite curves were also taken into consideration while choosing the type of the turbine. The modernization project tends not to eliminate those existing power plant sections (machines and equipment), which are able to operate further. The project suggests that those units should remain in the system, which satisfy the applied durability criterion. The last phase of the optimization project focuses on the sensibility verification of several steam-gas CHP plant parameters and their influence on the whole system.
机译:燃气轮机的应用通常可以增加热电联产电力系统的可能配置数量,这已成为传统燃煤电厂的重要替代品。它们具有更好的热力学,经济,生态和运行指标。燃气轮机也是对现有电厂进行现代化改造的最佳选择。本文讨论了燃气轮机的各种技术配置的有效性,这些技术配置将在已经存在的常规热电联产电厂的现代化项目中应用。在分析中,采用了焓和熵方法。熵方法的算法允许确定热电联产(CHP)设备每个部分的熵生成。在分析燃气轮机技术循环配置的有效性时,考虑了几个标准。这些包括能源效率,HRSG和蒸汽循环的效率,整个火力发电站的效率,HRSG和蒸汽循环的充分利用效率以及燃料效率指数。假定燃气轮机在其标称条件下运行。选择涡轮机的类型时也要考虑复合曲线。现代化项目往往不会消除那些能够继续运行的现有发电厂部分(机器和设备)。该项目建议这些单元应保留在系统中,满足所应用的耐久性标准。优化项目的最后阶段着重于对几个蒸汽CHP装置参数的敏感性验证及其对整个系统的影响。

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