A comparative study of radiation models in spray combustion

Alaa Al shiblawi, A. Majhool
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Abstract

This work deals with the investigation of radiation models for combustion spray. The n-pentane fuel C5h12 is used for chemical reactions with the air. The main objective of these simulations is to compare the experimental data and radiation models for spray combustion and to select the best radiation model. The model is used to interpret the structure and properties of the prediction for spray combustion. The simulated cases are carried out using Ansys Fluent. The mixture fracture probability density function is used to evaluate the non-premixed combustion of vaporized fuel droplets. The Radiation models (p1, discrete coordinate, surface to surface, and Roseland) are used to predict local properties in two dimensions. The results of the numerical simulation are compared with the experimental data. The results showed that the p1 radiation model provides good results through temperature, turbulence kinetic energy, and velocity components.
喷雾燃烧中辐射模型的比较研究
本文研究了燃烧喷雾的辐射模型。正戊烷燃料C5h12用于与空气发生化学反应。这些模拟的主要目的是比较喷雾燃烧的实验数据和辐射模型,并选择最佳的辐射模型。该模型用于解释喷雾燃烧预测的结构和性质。利用Ansys Fluent进行了仿真。采用混合气断裂概率密度函数对汽化燃料液滴的非预混燃烧进行了评价。使用辐射模型(p1,离散坐标,面对面和Roseland)来预测二维的局部特性。数值模拟结果与实验数据进行了比较。结果表明,p1辐射模型通过温度、湍流动能和速度分量均能得到较好的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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