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THEORETICAL ANALYSIS OF DIFFUSION FLAMES USING PERTURBATION METHOD FOR DIFFERENT LEWIS AND DAMKOHLER NUMBERS

机译:刘易斯和达科勒数的微扰理论对扩散火焰的理论分析

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摘要

This paper presents a two dimensional asymptotic model of counterflow diffusion flame in the presence of radiation heat loss. The fuel and oxidizer, respectively, are injected from left and right hand side of the flame. The effects of burning rate, Lewis and Damkohler number on the structure and extinction of the flame is studied using perturbation method. To do so, the structure of the flame is considered to be composed of reaction zone with a thickness of O(ε) and radiation heat loss zone, of O(δ) thickness, that sandwiches the reaction zone. The effect of burning rate is illustrated by burning pre-exponential parameter, B. It is found that with the increase of the parameter, the flame temperature is also increased, and flame location moves toward the fuel side. In addition, the variation of Lewis number of fuel and oxidizer has a significant effect on the location and temperature of the flame.
机译:本文提出了在存在辐射热损失的情况下逆流扩散火焰的二维渐近模型。分别从火焰的左侧和右侧喷射燃料和氧化剂。利用摄动法研究了燃烧速率,刘易斯和达姆霍勒数对火焰结构和消光的影响。为此,认为火焰的结构由厚度为O(ε)的反应区和夹有反应区的O(δ)厚度的辐射热损失区组成。燃烧速率的影响通过燃烧预指数参数B来说明。发现,随着该参数的增加,火焰温度也会升高,并且火焰位置朝着燃料侧移动。另外,燃料和氧化剂的路易斯数的变化对火焰的位置和温度具有显着影响。

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