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The analysis of recirculation zone and ignition position of non-premixed bluff-body for biogas mild combustion

机译:非预混钝体沼气轻度燃烧的回流区和着火位置分析

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摘要

Combustion ignition study is important due to the combustion process becoming more lean and efficient. This paper studied the recirculation zone and ignition location for the bluff-body non-premixed MILD burner with biogas used as fuel. The location of the ignition was critical to ensure the spark energy supply during the ignition process is successful ignite the mixture of air and fuel. The numerical calculations were done using the commercial code ANSYS-Fluent to simulate the furnace with bluff-body burner to determine the recirculation zone. The turbulence model used was the realizable k-ε model. The inner recirculation zone between the air and fuel nozzle is the best location for the ignition point since low velocity of air and fuel mixing will assist the ignition process. This is because the ignition energy will have time to ignite the mixture in the low speed of turbulent swirl flow. The most suitable location with the highest possibility of ignition is the centre of the recirculation zone.
机译:由于燃烧过程变得更加稀薄和高效,因此燃烧点火研究很重要。本文研究了以沼气为燃料的钝体非预混合MILD燃烧器的回流区和点火位置。点火的位置对于确保点火过程中的火花能量供应成功点燃空气和燃料的混合物至关重要。使用商业代码ANSYS-Fluent进行数值计算,以模拟带有钝体燃烧器的熔炉,以确定再循环区域。使用的湍流模型是可实现的k-ε模型。空气和燃料喷嘴之间的内部再循环区域是点火点的最佳位置,因为低速的空气和燃料混合将有助于点火过程。这是因为点火能量将有时间在湍流涡流低速时点燃混合物。最有可能着火的位置是再循环区的中心。

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