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Laminar Burning Velocity and Flammability Characteristics of Biogas in Spark Ignited Premix Combustion at Reduced Pressure

机译:火花中沼气的层状燃烧速度和可燃性特性在减压下点燃预混燃烧

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Biogas as a "Powergas" is an alternative fuel produced in digestion facilities, that is sustainable and renewable. Based on chemical analysis, the composition of the biogas produced in East Java is 66.4% methane, 30.6% carbon dioxide and 3% nitrogen. Methane is a flammable gas, whereas, nitrogen and carbon dioxide are inhibitors. Given it has a different composition to traditional fuels, a fundamental study of biogas flame propagation characteristics is desirable to quantify this important fuel property. Spherically expanding flames propagating at constant pressure are employed to measure the laminar burning velocity and flammability characteristics as mixture function of the mixture composition. These important parameters were measured using a photographic technique in a high pressure fan-stirred bomb. The characteristics of biogas-air flames were initially studied at reduced pressure and at various equivalence ratios from the lower flammable limit to the upper flammable limit. The results were compared with those from biogasair flames at atmospheric pressure. Based on this experimental investigation, the laminar burning velocities of biogas-air mixtures at reduced pressure were 0.218 m/s for θ=0.75, 0.246 m/s for θ=0.80 and 0.269 m/s for θ=0.85 respectively and only for these biogas mixtures propagated at reduced pressure. At the same equivalence ratio (θ), the laminar burning velocities of the biogas-air mixtures at reduced pressure are higher than those at atmospheric pressure. The flammable region of biogas became narrower by reducing initial pressure. The dilution effect is stronger at reduced pressure. Therefore, the flammable composition mixture areas of biogas-air mixtures are more limited at reduced pressure than those at atmospheric pressure.
机译:沼气作为“Powergas”是一种在消化设施中产生的替代燃料,可持续和可再生。基于化学分析,东爪哇制作的沼气的组成为66.4%甲烷,30.6%二氧化碳和3%氮。甲烷是一种易燃气体,而氮和二氧化碳是抑制剂。鉴于传统燃料具有不同的组合物,对沼气火焰传播特性的基本研究是理想的,以量化这一重要的燃​​料性能。在恒定压力下传播的球形膨胀火焰用于测量层状燃烧速度和可燃性特性作为混合物组合物的混合物功能。这些重要参数在高压风扇搅拌炸弹中使用照相技术测量。最初在减压下研究沼气 - 空气火焰的特征,并从较低的易燃限度与上部易燃极限的较低易燃限度一起研究。将结果与来自沼气火焰在大气压下的结果进行了比较。基于该实验研究,减压下沼气混合物的层状燃烧速度为0.218m / s,对于θ= 0.80,0.246m / s,分别为0.246m / s,分别为0.269 m / s,仅为0.85沼气混合物在减压下繁殖。以相同的等效比(θ),减压下沼气混合物的层状燃烧速度高于大气压下的烧伤速度。通过减少初始压力,沼气区域变得更窄。稀释效果在减压下更强。因此,易燃组合物的沼气 - 空气混合物的混合物区域比大气压下的减压更受限制。

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