三维湍流扩散羽流模型的计算

Safar Khojiev, Shukhrat Yuldoshev, Shamshod Savriev
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引用次数: 1

摘要

本文建立了可燃混合气从矩形喷嘴流出并在加热气流中传播的三维扩散燃烧模型。对于三维情况,使用关于过量浓度的保守Schwab-Zeldovich函数详细描述了多组分浓度方程的变换,这将四组分混合物的扩散方程的数量减少到一个。假设在火焰锋面面上,氧化剂和燃料的流动必须满足在火焰锋面上消耗和形成的物质的化学计量相等的条件为零。采用三维Navier-Stokes方程组来描述流体流动。为了计算湍流粘度,采用了考虑射流三维和温度不均匀性的代数模型。给出了可燃混合气初速对火焰参数影响的数值结果。丙烷-丁烷混合物扩散燃烧过程中。研究发现,在其他参数不变的情况下,燃料速度的增加并不一定导致火焰前最高温度的增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the calculation of a model of a three-dimensional turbulent diffusion plume
In this paper a three-dimensional model of diffusion combustion is presented in the case of the outflow of a combustible gas mixture from a rectangular nozzle and propagating in a heated (with a passing) air flow. For the three-dimensional case, the transformation of the multicomponent concentration equation is described in detail using the conservative Schwab-Zeldovich function with respect to excess concentrations, which reduces the number of diffusion equations to one for a four-component mixture. It is assumed that on the surface of the flame front, the flows of the oxidizer and fuel must satisfy the condition of stoichiometric equality of the consumed and formed substances at the flame front are equal to zero. The three-dimensional system of Navier-Stokes equations is used to describe the flow. To calculate the turbulent viscosity, an algebraic model is used that takes into account the three-dimensionality and temperature inhomogeneity of the jet. A number of numerical results are given as the influence of the initial value of the velocity of the combustible mixture on the flame parameters. During diffusion combustion of a propane-butane mixture. It was found that an increase in fuel velocity does not always lead to an increase in the maximum temperature at the flame front, with other parameters unchanged.
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