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首页> 外文期刊>Waste Management >Mathematical Modelling Of Particle Mixing Effect On The Combustion Of Municipal Solid Wastes In A Packed-bed Furnace
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Mathematical Modelling Of Particle Mixing Effect On The Combustion Of Municipal Solid Wastes In A Packed-bed Furnace

机译:填充床炉内颗粒混合对城市固体废物燃烧影响的数学模型

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摘要

Packed bed combustion is still the most common way to burn municipal solid wastes. In this paper, a dispersion model for particle mixing, mainly caused by the movement of the grate in a moving-burning bed, has been proposed and transport equations for the continuity, momentum, species, and energy conservation are described. Particle-mixing coefficients obtained from model tests range from 2.0 × 10~(-6) to 3.0 × 10~(-5) m~2/s. A numerical solution is sought to simulate the combustion behaviour of a full-scale 12-tonne-per-h waste incineration furnace at different levels of bed mixing. It is found that an increase in mixing causes a slight delay in the bed ignition but greatly enhances the combustion processes during the main combustion period in the bed. A medium-level mixing produces a combustion profile that is positioned more at the central part of the combustion chamber, and any leftover combustible gases (mainly CO) enter directly into the most intensive turbulence area created by the opposing secondary-air jets and thus are consumed quickly. Generally, the specific arrangement of the impinging secondary-air jets dumps most of the non-uniformity in temperature and CO into the gas flow coming from the bed-top, while medium-level mixing results in the lowest CO emission at the furnace exit and the highest combustion efficiency in the bed.
机译:填充床燃烧仍然是燃烧城市固体废物的最常见方法。在本文中,提出了一种主要由炉排在移动燃烧床中运动引起的颗粒混合的弥散模型,并描述了连续性,动量,种类和能量守恒的输运方程。从模型试验获得的颗粒混合系数范围为2.0×10〜(-6)至3.0×10〜(-5)m〜2 / s。寻求一种数值解决方案来模拟全尺寸每小时12吨废物焚化炉在不同床层混合水平下的燃烧行为。已经发现,混合的增加导致床的点火稍有延迟,但是在床的主要燃烧期间大大增强了燃烧过程。中度混合产生的燃烧曲线位于燃烧室的中心位置,任何残留的可燃气体(主要是CO)直接进入由相对的二次空气射流产生的最强烈的湍流区域,因此消耗很快。通常,撞击的二次空气喷射器的特定布置将大部分温度和CO的不均匀性倾泻到来自床顶的气流中,而中等水平的混合导致在炉子出口和出口处的CO排放最低。床内最高的燃烧效率。

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