喷射式燃气燃烧器初混段燃烧过程研究

Q3 Energy
K. Kostov, I. Denev, Neven Krystev
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引用次数: 1

摘要

气体燃料的经济燃烧意味着它以最小的过量空气系数和最小的损失进行。结构、空气动力学和物理因素对燃烧的完整性和点火条件具有决定性影响。利用ANSYS软件程序,通过计算机模拟研究了平焰喷射燃烧器筒形混合段燃烧过程的主要特性。建立了一个几何模型,可以在该模型上研究直射流和旋转射流。考虑了数值研究气体燃料(C3 H8)在喷射产生的受限气流中燃烧的可能性。基于湍流动能及其耗散率方程,建立了湍流的k-ε模型。这项工作的目的是研究和分析温度和速度以及氮氧化物和一氧化碳浓度沿燃烧室轴线的变化和分布。给出了45°和0°喷嘴倾角的结果。基于这些,进行了分析,发现随着旋转度的增加,温度升高的绝对值和燃料质量浓度沿混合段长度的变化可以用来调节燃烧过程。所建立的数值模型可以成功地用于确定在相同初始条件下,改变喷嘴倾角的燃烧器的主要参数。所获得的结果可作为进一步研究的基础,以提高燃烧过程的效率并降低其产生的有害排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research of the combustion process in the initial mixing section of the injection gas burner
The economical combustion of gas fuel implies that it takes place with a minimum coefficient of excess air and minimal losses. Constructive, aerodynamic and physical factors have a determining influence on the completeness of combustion and the conditions of ignition. Using the ANSYS software program, the main characteristics of the combustion process in the cylindrical mixing section of a flat flame injection burner are investigated through computer simulation. A geometric model was created on which it is possible to study both straight and rotating jets. The possibility of numerically investigating the combustion of gaseous fuel (C 3 H 8 ) in a confined air flow produced by injection is considered. A k -ε model of turbulence was used, which is based on the equation for turbulent kinetic energy and its dissipation rate. The purpose of the work is to study and analyze the changes and distribution of temperature and speed as well as the concentration of nitrogen oxides and carbon monoxide along the axis of the combustion chamber. The results are presented for the angles of inclination of the nozzles of 45° and 0°. Based on these, an analysis was made, where it was found that with the increase in the degree of rotation, the absolute values of the temperature increase and the change in the mass concentration of the fuel along the length of the mixing section can be used to regulate the combustion process. The created numerical model can be successfully used to determine the main parameters of the burner under the same initial conditions, changing the angle of inclination of the nozzles. The obtained results can be considered as a basis for further research related to increasing the efficiency of the combustion process and lowering the harmful emissions produced by it.
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来源期刊
Polityka Energetyczna
Polityka Energetyczna Energy-Energy (all)
CiteScore
3.60
自引率
0.00%
发文量
9
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