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Improvement of Boiler's Efficiency Using Heat Recovery and Automatic Combustion Control System

机译:采用热回收和自动燃烧控制系统提高锅炉效率

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This research was conducted to improve the efficiency of a fire tube boiler with a fixed gate and screw conveyor for feeding fuel. The efficiency improvement was based on the use of flue gas heat for fuel drying, air preheating before combustion, and controlling amount of air for fuel combustion before entering the combustion chamber using the fuzzy logic control algorithm. The experimental result indicates that using heat recovery and fuel drying reduces 3%wt of fuel moisture content and boiler efficiency increases 0.41%. Preheating air means a 35°C increase of temperature or a 0.72% increase of boiler efficiency. The average accuracy of air control is 89.15%, indicating a 4.34% increase of boiler efficiency. If the three systems are operated simultaneously, 5.15% increase of boiler efficiency will be achieved or 246.88 tons/year saving of fuel.
机译:进行该研究以提高用固定闸阀和螺旋输送机提高消防管锅炉的效率,用于馈送燃料。效率改进是基于使用烟气热量来燃料干燥,燃烧前的空气预热,并使用模糊逻辑控制算法在进入燃烧室之前控制用于燃料燃烧的空气量。实验结果表明,使用热回收和燃料干燥降低了3%WT的燃料含量,锅炉效率增加0.41%。预热空气是指35°C的温度增加或锅炉效率提高0.72%。空气控制的平均精度为89.15%,表明锅炉效率增加4.34%。如果三个系统同时运行,锅炉效率的增加5.15%,燃料的储蓄效率为246.88吨。

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