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Volatization & combustion of biomass particles in random media: Mathematical modeling and analyze the effect of Lewis number

机译:随机培养基中生物质颗粒的挥发性和燃烧:数学建模和分析刘易斯数的效果

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摘要

In this work, a mathematical model is proposed to model volatilization and combustion of micro organic dust particles. In contrast with previous studies, random combustion of Biomass particles (Lycopodium) and analyze the effect of different Lewis number on the combustion properties is investigated. It is assumed that flame structure Is consisted of preheat or volatilization zone, reaction zone and post flame zone. Also, different Lewis numbers are applied in governing equations. For modeling random combustion, the source term in energy equation has been modeled by use of random states for volatilization of particles in preheat zone. For this regard, different groups which contains random number of particles and sense a random temperature in the preheat zone has been considered. In this analysis, the impact of random combustion, Lewis number and size of particles on the combustion properties of Biomass particles such as: burning velocity, flame temperature and effective equivalence ratio are studied. Consequently, comparison made between results obtained from random model by experimental data, showed that the random model have a better agreement with experimental data than non-random model.
机译:在这项工作中,提出了一种数学模型来模拟微量有机粉尘颗粒的挥发和燃烧。与先前的研究相比,研究了生物质颗粒(LycoPodium)的随机燃烧并分析了不同lewis数对燃烧性能的影响。假设火焰结构由预热或挥发区,反应区和后火焰区组成。此外,不同的lewis编号应用于控制方程。为了对随机燃烧进行建模,通过使用随机状态来建模能量方程中的源术语以在预热区中的颗粒挥发。对于这方面,已经考虑了含有随机数的颗粒的不同组,并考虑了预热区中的随机温度。在该分析中,研究了随机燃烧,Lewis数和粒子尺寸对生物质颗粒的燃烧性质的影响,例如:燃烧速度,火焰温度和有效的等效比。因此,通过实验数据从随机模型获得的结果进行比较,显示随机模型与实验数据具有比非随机模型更好的协议。

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