在循环沸床炉中焚烧废木材的方案

R. Dzhyoev
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摘要

固体燃料的旋流涡燃烧技术可以减小锅炉机组的炉体体积、尺寸和重量。燃料颗粒和空气在漩涡流中的混合提供了密集的热交换和燃料在有限的炉子体积内燃烧。介绍了在循环流化床中改进燃料粉(废木材)燃烧热方案的结果。数值计算结果表明,颗粒直径为25 μm ~ 750 μm的木屑有燃烧的可能。当空气-燃料混合物从炉底供给,二次风从炉顶供给时,灰通过炉底部的槽以液体形式排出。结果表明,当木屑含水率为10%,灰分含量Ac = 0.6%,燃烧热为17.7 MJ / kg时,颗粒夹带率为19.2%,颗粒燃尽度为92.5%,需要在循环沸腾层中进行夹带补燃。改善乌克兰燃料和能源平衡的方法之一是使用替代天然气的热源,即固体燃料或木材工业废料。有必要采用专门的固体燃料燃烧技术。目前,关于木材废料燃烧过程的理论和实践知识还不完整。使用天然气作为热能来源在乌克兰的燃料和能源平衡中占很大一部分。为了提高固体燃料的使用比例,有必要对固体燃料锅炉的燃烧过程和强化传热过程的方法进行更详细的研究。数值计算结果表明,采用涡流炉代替直流炉,增加了颗粒在炉内的停留时间,减少了燃料循环的次数,减小了炉的体积和重量
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scheme of incineration of wood waste in a furnace with a circulating boiling bed
Cyclonic-vortex technology of solid fuel combustion allows to reduce the furnace volume of the boiler unit, dimensions and weight. Mixing of fuel particles and air in a swirling stream provides intensive heat exchange and fuel combustion in a limited furnace volume. The results of improving the thermal scheme of combustion of pulverized fuel (wood waste) in a circulating fluidized bed are presented. The results of numerical calculations showed the possibility of burning sawdust with a particle diameter of 25 μm to 750 μm. When the air-fuel mixture is supplied from the bottom of the furnace, and the secondary air from the top of the furnace, ash is removed in liquid form through a slot in the lower part of the furnace. It was found that with a sawdust moisture content of 10%, ash content Ac = 0.6%, a higher combustion heat of 17.7 MJ / kg, particle entrainment is 19.2 %, the degree of particle burnout is 92.5%, which requires afterburning of entrainment in a circulating boiling layer. One of the ways to improve Ukraine's fuel and energy balance is to use alternative sources of heat to natural gas, namely solid fuels or wood industry waste. It is necessary to involve specialized technologies for burning solid fuels. Currently, there is an incomplete theoretical and practical knowledge about the processes of burning wood waste.The use of natural gas as a source of thermal energy occupies a significant part of Ukraine's fuel and energy balance. To increase the share of solid fuels, it is necessary to study in more detail the processes of their combustion and the use of methods of intensification of heat transfer processes in the furnaces of solid fuel boilers. The results of numerical calculations showed that the use of vortex furnace instead of direct flow in the scheme CKS increases the residence time of particles in the furnace, which reduces the multiplicity of fuel circulation, reduce the size and weight of the furnace
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