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首页> 外文期刊>Research journal of applied science, engineering and technology >Combustion Air Pre-heating from Ash Sensible Heat in Municipal Waste Incineration Systems
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Combustion Air Pre-heating from Ash Sensible Heat in Municipal Waste Incineration Systems

机译:市政垃圾焚烧系统中灰分显热的燃烧空气预热

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Heat recovery from bottom ash is more important in municipal waste combustion systems than in any other solid fuel combustion since almost 50% of it comprises of non-combustibles. In this study, an ash cooling system using air as the cooling medium has been modeled for pre-heating the combustion air. Air cooling has several advantages over water cooling methods. The study involves modeling using Gambit tool and is solved with the fluent solver. Municipal solid waste incineration systems have the advantage of being located near the waste collection area apart from the high volume reduction ratio. Improvements in the emission control systems and combustion technology can make incineration a highly feasible disposal method. Low furnace temperature due to heat losses through fuel moisture loss and ash sensible heat loss has been a disadvantage with these systems. In this study, a small percentage of the combustion air is pre-heated in a non-contact type heat exchanger and its effect on the available energy of combustion gases at the evaporator outlet is studied. The study is performed for two different waste samples. Results indicate significant increase in available energy at the evaporator outlet and better relative performance for the lower grade fuel. A comparison is made with similar methods reported in the literature along with a brief discussion on the methodologies adopted. The results confirm the importance of installing ash sensible heat recovery mechanism for waste incineration systems as well as the feasibility of the air based method.
机译:在城市垃圾燃烧系统中,从底灰中回收热量比在任何其他固体燃料燃烧中更为重要,因为其中近50%的成分为不可燃物。在本研究中,已对使用空气作为冷却介质的烟灰冷却系统进行了建模,以预热燃烧空气。空气冷却比水冷却方法具有多个优势。该研究涉及使用Gambit工具进行建模,并使用流畅的求解器进行求解。市政固体废物焚化系统的优点是,体积减少率高,而且位于废物收集区附近。排放控制系统和燃烧技术的改进可以使焚烧成为一种高度可行的处置方法。这些系统的缺点是,由于燃料水分流失而产生的热量损失和灰分显热损失导致炉温低。在这项研究中,一小部分的燃烧空气在非接触式热交换器中被预热,并且研究了其对蒸发器出口处燃烧气体的可用能量的影响。该研究是针对两种不同的废物样品进行的。结果表明,蒸发器出口处的可用能量显着增加,低级燃料的相对性能更好。使用文献中报道的类似方法进行比较,并对使用的方法进行简要讨论。结果证实了为垃圾焚烧系统安装灰显热回收机制的重要性以及基于空气的方法的可行性。

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