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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Research on influence of steam extraction parameters and operation load on operational flexibility of coal-fired power plant
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Research on influence of steam extraction parameters and operation load on operational flexibility of coal-fired power plant

机译:蒸汽提取参数及运行负荷对燃煤电厂运行灵活性影响的研究

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摘要

The operational flexibility of coal-fired power plant is very important for the integration of large-scale renewable energy to the grid. In order to increase the operational flexibility of coal-fired power plant, a 600 MW subcritical coal-fired power plant was selected as research example to analyze the influence of steam extraction parameters and operation load by simulation. A novel main steam extraction system was proposed to adjust the power output under the low load period. The sensible and latent heat of the extracted steam was stored in molten salts and phase change materials, respectively, during the load reduction process. While the stored heat was reused again to heat the feed water and condensate water during the load raising process. The 50% rated load (300.03 MW) of the unit was used as the research benchmark to further adjust the load. The results show that the proposed steam extraction system can improve the operational flexibility of coal-fired power plant. The power output can be reduced to 204.51 MW from 300.03 MW when the main steam extraction mass flow rate is 250 t/h during the load reduction process. The sensible heat storage power factor and the operation load of the unit can affect the power output increment of coal-fired power plant during the load raising process. Under the condition of the maximal sensible heat storage power factor is 0.2462, the power output can be increased to 325.47 MW from 300.03 MW when the bypassed feed water mass flow rate of 251 t/h was heated by the stored heat during the load raising process. Using such operation model, the coal-fired power plant can achieve the maximum deep peak shaving time of 8.4 h/d, and its equivalent thermal efficiency is increased by 2.28%. With the same stored thermal energy to heat the bypassed feed water of 308.65 t/h, the power output can be increased to 394.2 MW from 360.07 MW (60% rated load) at the same sensible heat storage power factor of 0.2462 during the load raising process, and the coal-fired power plant can achieve the maximum deep peak shaving time of 9.86 h/ d with its equivalent thermal efficiency increase of 2.55%. The results show that the proposed steam extraction method can make the unit operate in the lowest stable load and provide a wider renewable energy access space below the minimum stable load. The research provides a theoretical guidance for the flexibility design of coalfired power plant, especially suitable for the large-scale renewable energy access to the grid in China.
机译:燃煤电厂的运行灵活性对于大规模可再生能源并网非常重要。为了提高燃煤电厂的运行灵活性,以一座600MW亚临界燃煤电厂为研究对象,通过仿真分析了抽汽参数和运行负荷的影响。提出了一种新的主抽汽系统,用于在低负荷期间调节功率输出。在减负荷过程中,抽汽的显热和潜热分别储存在熔盐和相变材料中。而在负荷提升过程中,储存的热量再次用于加热给水和冷凝水。以机组50%额定负荷(300.03 MW)为研究基准,进一步调整负荷。结果表明,所提出的抽汽系统可以提高燃煤电厂的运行灵活性。在减负荷过程中,当主抽汽质量流量为250t/h时,输出功率可从300.03mw降至204.51mw。显热储能功率因数和机组运行负荷会影响燃煤电厂在升负荷过程中的出力增量。在最大显热蓄热功率因数为0.2462的条件下,当旁路给水质量流量为251t/h时,在升负荷过程中蓄热加热,输出功率可从300.03mw提高到325.47mw。采用这种运行模式,燃煤电厂可实现最大深度调峰时间8.4h/d,等效热效率提高2.28%。在相同的蓄热能加热308.65t/h旁路给水的情况下,在升负荷过程中,在相同的显热蓄热功率因数0.2462下,功率输出可从360.07MW(60%额定负载)增加到394.2MW,燃煤电厂可实现最大深度调峰时间9.86h/d,等效热效率提高2.55%。结果表明,所提出的抽汽方式可以使机组在最低稳定负荷下运行,并在最低稳定负荷下提供更广阔的可再生能源接入空间。该研究为燃煤电厂的柔性设计提供了理论指导,尤其适用于我国大规模可再生能源接入电网。

著录项

  • 来源
  • 作者单位

    Beijing Univ Technol Fac Environm &

    Life MOE Key Lab Enhanced Heat Transfer &

    Energy Conse Beijing Key Lab Heat Transfer &

    Energy Convers Beijing 100124 Peoples R China;

    Beijing Univ Technol Fac Environm &

    Life MOE Key Lab Enhanced Heat Transfer &

    Energy Conse Beijing Key Lab Heat Transfer &

    Energy Convers Beijing 100124 Peoples R China;

    Beijing Univ Technol Fac Environm &

    Life MOE Key Lab Enhanced Heat Transfer &

    Energy Conse Beijing Key Lab Heat Transfer &

    Energy Convers Beijing 100124 Peoples R China;

    Beijing Univ Technol Fac Environm &

    Life MOE Key Lab Enhanced Heat Transfer &

    Energy Conse Beijing Key Lab Heat Transfer &

    Energy Convers Beijing 100124 Peoples R China;

    Beijing Univ Technol Fac Environm &

    Life MOE Key Lab Enhanced Heat Transfer &

    Energy Conse Beijing Key Lab Heat Transfer &

    Energy Convers Beijing 100124 Peoples R China;

    Beijing Univ Technol Fac Environm &

    Life MOE Key Lab Enhanced Heat Transfer &

    Energy Conse Beijing Key Lab Heat Transfer &

    Energy Convers Beijing 100124 Peoples R China;

    China Huaneng Grp Clean Energy Res Inst Co Ltd Beijing 102209 Peoples R China;

    China Huaneng Grp Co Ltd Beijing 100031 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 热力工程、热机;热力工程理论;
  • 关键词

    Coal-fired power plant; Extracted steam; Thermal energy storage; Load reduction; Load raising; Operational flexibility;

    机译:燃煤电厂;抽汽;热能储存;减载;提高负荷;操作灵活性;

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