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Hydrodynamic Analysis and Metal Temperature Calculation for the Water Wall of a 660MW Supercritical Boiler at Severe Peak Load Regulation

机译:660MW超临界锅炉水壁在重度峰值调节中的水力分析和金属温度计算

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As variable renewable energy establishes an ever-greater role in electricity systems, so demands placed on conventional generation structure are changing in China. However, how to absorb the new energy and solve the peak shaving problem has become a key factor restricting the development of new energy in China. Chinese coal-based energy resources structure determines coal-fired power plants to take more severe peak load regulation. Peak shaving task is a new requirement for coal-fired power units for a long period of time in China, and the boiler of coal-fired power units hydrodynamic safety evaluation of peak load regulation is an important part of it. The hydrodynamic calculation and experimental study of a 660 MW supercritical boiler at deep peak load regulation were carried out in this paper. On the basic of the boiler structure and combustion mode, a network system mathematical model of a 660MW boiler was established. The results of the calculation indicate that when the boiler load reach 26% BMCR, the hydrodynamic characteristics and water wall temperature of the boiler are all within the safe range. According to the calculation results, the actual low-load experiment on site was carried out. The experiment results show that there are no safety problems in the boiler under 26%BMCR too, and the measured data of water wall temperature agree with the calculation well.
机译:随着可变可再生能源在电力系统中建立了更大的作用,因此在传统的一代结构上的需求在中国变化。然而,如何吸收新能源并解决高峰剃须问题已成为限制中国新能源发展的关键因素。中国煤炭的能源结构决定了燃煤发电厂采取更严重的峰值负荷调节。峰值剃须任务是在中国长时间燃煤电力单元的新要求,燃煤电力单元的锅炉流体动力学安全评估峰值负荷调节是其中的重要组成部分。本文实施了660 MW超临界锅炉660MW超临界锅炉的流体动力学计算和实验研究。在锅炉结构和燃烧模式的基础上,建立了660MW锅炉的网络系统数学模型。计算结果表明,当锅炉负荷达到26%BMCR时,锅炉的流体动力学特性和水壁温度都在安全范围内。根据计算结果,进行现场的实际低负荷实验。实验结果表明,锅炉中没有26%BMCR在锅炉中没有安全问题,水壁温度的测量数据与计算良好。

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