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Predictive method for low load off-design operation of a lignite fired power plant

机译:褐煤电厂低负荷非设计运行的预测方法

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摘要

The increasing share of renewable energy sources and their stochastic attitude of power production force the conventional fossil fuel thermal plants to operate in a more flexible mode, with rapid load changes (ramp up/down rates) and in lower thermal loads than their current technical minimum. This can be achieved with the use of pre-dried lignite as a supporting fuel, in the place of conventional liquid fuels such as diesel. This study presents a thermodynamic methodology for the prediction of Agios Dimitrios V Greek lignite fired boiler at low power loads; even below the current technical minimum, when pre-dried lignite is employed. The calculations are based on measurement data provided for the current operating thermal loads of 100%, 80% and 60% (current technical minimum). Among the controlling values of critical operational parameters, this model takes into account the thermodynamic properties (pressure, temperature and steam quality) of SH and RH steam, the steam turbine properties, the heat transfer coefficient of the heat exchangers and the fuel combustion specifications. The model of the boiler is developed in Aspen Plus whereas the ST model was built in GateCycle. Furthermore, this house-built model is implemented to estimate the heat transfer coefficients for the theoretical scenario of 35% thermal load operation, which is far below the current technical minimum and no design or measurement data exist for them. Thermodynamic calculations reveal the boiler effective operation of the boiler even at a thermal load of 35% with a quite good overall thermal efficiency. The net efficiency of the theoretical new technical minimum load is 0.9 percentage points higher than the current one. Results of this approach are also compared against corresponding CFD results, with a fairly good accordance.
机译:可再生能源份额的增加及其对电力生产的随机态度迫使传统的化石燃料热电厂以更加灵活的方式运行,负荷变化迅速(上升/下降速率),并且热负荷低于当前的技术最低要求。 。这可以通过使用预干燥的褐煤作为辅助燃料代替常规的液体燃料(例如柴油)来实现。这项研究提出了一种用于预测低功率负荷下的Agios Dimitrios V希腊褐煤锅炉的热力学方法。使用预干燥的褐煤时,甚至低于当前的技术最低要求。这些计算基于为当前100%,80%和60%(当前的技术最低要求)运行热负荷提供的测量数据。在关键运行参数的控制值中,该模型考虑了SH和RH蒸汽的热力学特性(压力,温度和蒸汽质量),蒸汽轮机特性,热交换器的传热系数和燃料燃烧规格。锅炉模型在Aspen Plus中开发,而ST模型在GateCycle中构建。此外,该住宅模型用于估计热负荷运行35%的理论情况下的传热系数,该系数远低于当前的技术最低要求,因此不存在任何设计或测量数据。热力学计算表明,即使在35%的热负荷下,锅炉的锅炉也能有效运行,并且整体热效率相当好。理论上新的技术最低负载的净效率比当前的最低效率高0.9个百分点。还将该方法的结果与相应的CFD结果进行比较,并具有相当好的一致性。

著录项

  • 来源
    《Fuel》 |2017年第1期|685-693|共9页
  • 作者单位

    Natl Tech Univ Athens, Dept Mech Engn, Lab Steam Boilers & Thermal Plants, Athens, Greece|Ctr Res & Technol Hellas, Chem Proc & Energy Resources Inst CERTH CPERI, Thermi, Greece;

    Ctr Res & Technol Hellas, Chem Proc & Energy Resources Inst CERTH CPERI, Thermi, Greece;

    Ctr Res & Technol Hellas, Chem Proc & Energy Resources Inst CERTH CPERI, Thermi, Greece;

    Ctr Res & Technol Hellas, Chem Proc & Energy Resources Inst CERTH CPERI, Thermi, Greece;

    Publ Power Corp SA, 30 Chalkokondili Str, GR-10432 Athens, Greece;

    Publ Power Corp SA, 30 Chalkokondili Str, GR-10432 Athens, Greece;

    Natl Tech Univ Athens, Dept Mech Engn, Lab Steam Boilers & Thermal Plants, Athens, Greece|Ctr Res & Technol Hellas, Chem Proc & Energy Resources Inst CERTH CPERI, Thermi, Greece;

  • 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

    Lignite power plant; Pre-dried lignite; Technical minimum load; Thermodynamic modeling; Aspen Plus;

    机译:褐煤电厂;预干燥褐煤;技术上的最小负荷;热力学模型;Aspen Plus;

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