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The Effect of Firewood Moisture Content on the Atmospheric Thermal Load by Flue Gases Emitted by a Boiler

机译:锅炉发出的烟气燃料含水量对大气热负荷的影响

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In this paper, we present an analysis on the effect of the moisture content of firewood on the atmospheric thermal load created by the heating of flue gases with temperatures of t fg = 120–200 °C, emitted by a boiler when wood with moisture content of W = 10%–60% is combusted. The load of the atmosphere created by the heat of the flue gases with temperatures of t s = 120 °C from the boiler, where dried wood with the moisture content of W = 10% is combusted, is Q = 9.2 MJ·GJ ?1 . The atmospheric thermal load caused by flue gases with the temperature of t s = 200 °C, resulting from the combustion process of wet firewood with a moisture content of W = 60%, is 3.8 times higher compared with the above-mentioned conditions. The heating of water vapor from the evaporated water occurring in combusted wood, as well as the heat of the heated nitrogen and unoxidized oxygen in the combustion air delivered to the furnace of a firewood boiler, are considered to be reasons for the increasing atmospheric thermal load caused by the heating of flue gases, resulting from the combustion of wood with higher moisture content.
机译:在本文中,我们展现了柴火含量对由T FG = 120-200°C的温度加热的烟气加热产生的大气热载体的影响分析,当时木材与水分含量的锅炉发出W = 10%-60%燃烧。由烟气温度的烟道气体的热量产生的气氛的负荷,从锅炉的温度燃烧,具有W = 10%的水分含量的干燥木材,是Q = 9.2MJ·GJ?1。由烟气引起的烟气温度与T S = 200℃的温度引起,由湿木柴的燃烧过程具有W = 60%的水分含量,与上述条件相比的含水量为3.8倍。从燃烧木材中发生的蒸发水的加热水蒸气,以及加热的氮气和燃烧空气中的加热氮和未氧化氧的热量被认为是增加大气热载荷的原因由加热烟道气引起的,由木材燃烧具有较高的水分含量。

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