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PERFORMANCE ANALYSIS AND OPTIMIZATION OF FLUE GAS WASTE HEAT RECOVERY SYSTEM OF A 600MW COAL-FIRED POWER PLANT

机译:600MW燃煤电厂烟气废热回收系统的性能分析与优化

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Recovering the waste heat of the flue gas from the boilers of coal-fired units, so that part of the boiler's flue gas waste heat can be utilized in the turbine regenerative heating system is an important way to increase efficiency and reduce emissions of coat-fired units. In this paper, a 600MW supercritical coal-fired unit is taken as an example, and the conceptual design of a flue gas waste heat cascade utilization system is carried out. Based on the first and second laws of thermodynamics, the thermodynamic perfection of the heat transfer process of the rotary regenerative air preheater, the exergy efficiency of the heat displacement process of the flue gas waste heat cascade utilization system, and the overall performance parameters of the coal-fired unit are calculated and analyzed under different parameters such as the bypass flue ratio and the inlet air temperature of the regenerative air preheater. The energy-saving effect of flue gas waste heat cascade utilization system is restricted by factors such as acid dew point temperature, ammonium bisulfate (ABS) deposition inside the air preheater, etc. Based on the performance analysis of regenerative air preheater and ABS deposition law, considering the structural characteristics and operating parameters of air preheater, this paper gives a criterion number (R-number) of ABS deposition tendency, and analyzes the actual operation performance of flue gas waste heat cascade utilization system considering the restrictions.
机译:从燃煤装置的锅炉中恢复烟道气的废热,因此在涡轮机再生加热系统中可以使用部分锅炉烟气废热是提高效率和减少涂布涂层排放的重要途径。单位。本文采用了600MW超临界燃煤单元,作为示例,进行了烟道气废热级联利用系统的概念设计。基于热力学的第一和第二定律,热力学完善旋转再生空气预热器的传热过程,烟气废热级联利用系统的热位过程的高效效率,以及整体性能参数在不同参数下计算和分析燃煤单元,例如旁通烟道比和再生空气预热器的入口空气温度。烟气废热级联利用系统的节能效果受酸露点温度,空气预热器内的酸露天度温度,二硫酸铵(ABS)沉积等因素的限制。基于再生空气预热器和ABS沉积法的性能分析,考虑到空气预热器的结构特性和操作参数,本文给出了ABS沉积倾向的标准数(R-NUMBERS),并分析了考虑限制的烟气废热级联利用系统的实际操作性能。

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