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Optimization of combustion generated particulates in a residual fuel-fired furnace

机译:优化残留燃料燃烧炉中燃烧产生的颗粒

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摘要

This paper is concerned with the experimental work carried out in a horizontal tunnel type furnace to study the optimization of production of particulates during the process of combustion and to find out whether or not this optimization is achieved at the expense of thermal efficiency of the furnace. The furnace was fired with the residual fuel oil of viscosity 3500 seconds Redwood 1 using industrial burners. Thermal input to the furnace was varied between 3MW and 4MW. During the plant trial, the influence of combustion air preheat, quantity of atomizing steam, swirl in the combustion air and oil-water emulsion firing on combustion generated particulates and thermal efficiency of the furnace was studied. The tests result showed that the operating parameters and added water in the emulsion fuel played an important role in the formation of particulates and heat transfer to the furnace cooling load.
机译:本文涉及在卧式隧道式炉中进行的实验工作,以研究燃烧过程中微粒产生的优化,并确定是否以牺牲炉子的热效率为代价来实现这种优化。使用工业燃烧器用粘度为3500秒的红木1的残留燃料油来燃烧炉。加热炉的热输入在3MW和4MW之间变化。在工厂试验期间,研究了燃烧空气的预热,雾化蒸汽的量,燃烧空气中的涡流以及油水乳化液的燃烧对燃烧产生的颗粒物和炉子热效率的影响。测试结果表明,乳化燃料中的操作参数和加水在微粒形成和热量传递到炉子冷却负荷中起着重要作用。

著录项

  • 作者

    Raju G.; Mustafa Azeman;

  • 作者单位
  • 年度 1991
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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