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Numerical Investigation of Influence of Air and Fuel Dilution for Open Furnace MILD Combustion Burner

机译:空气和燃料稀释对轻炉MILD燃烧器的影响的数值研究

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摘要

Climate change and greenhouse gases (GHG) have udbecome one of the priorities for today’s intergovernmental issues. Reducing pollution and recycling the GHG are new challenges udfor the combustion community. The new technology Moderate or Intense Low oxygen Dilution MILD) combustion is one of the best alternatives for high thermal efficiency and low pollution combustion. This paper discusses the modelling of MILD combustion in an open furnace using FLUENT. Exhaust gas recirculation (EGR) was utilised to increase the combustion thermal efficiency by the reuse of the heat in the flue gas. The combustion chamber is enclosed to capture the flue gas for EGR. The oxygen dilution and pre-heating of the oxidiser which are udvital for operating in the MILD regime can be achieved by utilising EGR. The top of the chamber will be the opening for exhaust gas release. The ratios of EGR, fuel and air inlet velocity were numerically studied for their effect on achieving MILD combustion in an open furnace. Higher dilution ratios produce lower NOx emissions and more readily achieve the MILD condition.
机译:气候变化和温室气体(GHG)已成为当今政府间问题的优先事项之一。减少污染和回收温室气体是燃烧界面临的新挑战。新技术中度或强烈低氧稀释燃烧是高热效率和低污染燃烧的最佳替代方法之一。本文讨论了使用FLUENT在开放式炉中进行MILD燃烧的建模。利用废气再循环(EGR)通过再利用烟道气中的热量来提高燃烧热效率。燃烧室被封闭以捕获用于EGR的烟气。通过使用EGR可以实现在MILD模式下正常运行所需的氧气稀释和氧化剂预热。腔室的顶部将是释放废气的开口。数值研究了EGR,燃料和进气速度之比对它们在开放式炉中实现MILD燃烧的影响。较高的稀释比产生较低的NOx排放,更容易达到MILD条件。

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