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Numerical analysis of effect of preheat and swirl of inlet air on temperature profile in canister burner

机译:进气预热和旋流对筒式燃烧器温度分布影响的数值分析

摘要

The main purpose of this paper is to study the Computational Fluid Dynamics (CFD) prediction on temperature distribution inside the canister burner with inlet air pre-heating of 100K and 250K while varying the swirl angle of the radial swirler. Air swirler adds sufficient swirling to the inlet flow to generate central recirculation region (CRZ) which is necessary for flame stability and fuel air mixing enhancement. Therefore, designing an appropriate air swirler is a challenge to produce stable, efficient and low emission combustion with low pressure losses. A liquid fuel burner system with different radial air swirler with 280 mm inside diameter combustor of 1000 mm length has been investigated. Analysis were carried out using four different radial air swirlers having 30°, 40°, 50° and 60° vane angles. The flow behavior was investigated numerically using CFD solver Ansys Fluent. This study has provided characteristic insight into the distribution of temperature inside the combustion chamber. Results show that with the inlet air preheat before the combustion, the temperature distribution inside the canister would stabilize early into the chamber with higher swirl number (SN) compared without inlet air preheat. As for the inlet air preheat, the main effects are the resulting temperatures in the canister are higher, but there is a smaller hot-spot in the flame. This means that the temperature profile in the chamber is well distributed.
机译:本文的主要目的是研究在改变径向旋流器的旋流角的同时,将进气预热100K和250K的罐式燃烧器内部温度分布的计算流体动力学(CFD)预测。空气旋流器为进气流增加了充分的旋流,以产生中央再循环区域(CRZ),这对于火焰稳定性和增强燃油空气混合而言是必需的。因此,设计合适的空气旋流器是产生具有低压力损失的稳定,有效和低排放燃烧的挑战。已经研究了具有不同径向空气旋流器的液体燃料燃烧器系统,该径向空气旋流器的内径为280 mm的燃烧器长度为1000 mm。使用具有30°,40°,50°和60°叶片角的四个不同的径向空气旋流器进行分析。使用CFD求解器Ansys Fluent对流动行为进行了数值研究。这项研究为燃烧室内的温度分布提供了独特的见解。结果表明,在燃烧前使用进气预热的情况下,与没有进气预热的情况相比,碳罐内部的温度分布将以较高的旋流数(SN)早期稳定进入燃烧室。至于进气预热,主要影响是罐中的温度较高,但火焰中的热点较小。这意味着腔室内的温度分布良好。

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