弱扭曲射流中传热传质的渐近研究

P. A. Velmisov, Usama J. Mizher, V. Kovalnogov
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引用次数: 1

摘要

液体和气体的射流用于各种技术领域,作为控制传热和传质过程的手段,用于加强和稳定燃烧过程,作为保护结构免受热场暴露的手段,用于涂层等。在技术中,液体和气体的射流是由有限尺寸的源-喷嘴形成的,喷嘴出口截面的初始流出速度分布不同,因此,射流气动和热特性的计算简化为求解非自相似问题。然而,求解这类问题的方法之一是小参数下速度和压力级数的渐近展开方法,该级数的第一个元素是射流源问题的自相似解。本文提出了粘性不可压缩介质模型中轴对称弱旋流的渐近展开式,得到了不同于众所周知的具有有限旋流的经典方程[1]-[4]的非线性“边界层”方程。构造了这些方程的自相似解,描述了弱旋转射流中速度、压力和温度的分布。本文通过对射流内热场的计算,对[3]-[7]的结果进行了补充。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Asymptotic study of heat and mass transfer in weakly twisted jets
Jet flows of liquids and gases are used in various fields of technology as means of controlling the processes of heat and mass transfer, for the intensification and stabilization of the combustion process, as means of protecting structures from exposure to thermal fields, for coating, etc. The jets of liquids and gases in technology are formed by sources-nozzles of finite sizes with various distributions of the initial outflow velocities in the outlet section of the nozzle, therefore, the calculation of the aerodynamic and thermal characteristics of jet flows is reduced to solving non-self-similar problems. However, one of the methods for solving such problems is the method of asymptotic expansion of velocities and pressure in series in a small parameter, when the first member of this series is a self-similar solution to the jet source problem. This article proposes an asymptotic expansion for axisymmetric weakly swirling flows in a model of a viscous incompressible medium, which leads to nonlinear «boundary layer» equations that differ from the well-known classical equations [1]–[4] for flows with finite swirl. Self-similar solutions of these equations are constructed that describe the distribution of speed, pressure, and temperature in a weakly swirling jet. The results presented in the article complement the results of [3]–[7] by calculating the thermal field in the jet.
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