...
首页> 外文期刊>Granular matter >The effect of internal particle heat conduction on heat transfer analysis of turbulent gas-particle flow in a dilute state
【24h】

The effect of internal particle heat conduction on heat transfer analysis of turbulent gas-particle flow in a dilute state

机译:内部颗粒热传导对稀薄状态下湍流气-粒流传热分析的影响

获取原文
获取原文并翻译 | 示例
           

摘要

In many cases the conduction mechanism inside a particle can not be ignored (large particles, low thermal conductivity and high porosity) during turbulent gas-particle flows. However, the accurate solution might be difficult to apply. Therefore, we first develop here the ability to conduct accurate solution and then we define the criterion for which the internal conductivity might be ignored. A combination between commercial C.F.D. code and user defined programs was developed to predict numerically the gas-particle velocity and temperature profiles. The selected criterion (defined at the outlet of the pipe's cross-section), referred to the relation between the computational desirable average temperature difference (T_(p_(wall)) - T_(p_(center)))_(AVERAGE) without ignoring internal heat conductivity and the average particles temperature T_(P_(AVERAGE)) by ignoring internal heat conductivity, determines whether to consider the heat conduction mechanism in numerical simulations or to ignore it. It was found that the average particles temperature for T_P = f(r) is lower than the case when T_P - constant. Also, it was found that the non-dimensional temperature difference criterion is a continuous function of [Bi × (d_P/D)] for a specific geometry, various pipe and particle diameters, various particles' thermal conductivities, constant heat flux and Re number. The numerical code enables to extend the classical criterion for Bi number of solids to various gas-particle systems and different operational conditions.
机译:在许多情况下,在湍流的气体颗粒流动过程中,不能忽略颗粒内部的传导机制(大颗粒,低导热性和高孔隙率)。但是,准确的解决方案可能很难应用。因此,我们首先在这里发展进行精确求解的能力,然后定义内部电导率可以忽略的标准。商业C.F.D.开发了代码和用户定义的程序,以数字方式预测气体颗粒的速度和温度曲线。选择的标准(在管道横截面的出口处定义)指的是计算上期望的平均温差(T_(p_(wall))-T_(p_(center)))_(AVERAGE)之间的关系内部导热系数和平均粒子温度T_(P_(AVERAGE))通过忽略内部导热系数来确定是在数值模拟中考虑导热机制还是忽略它。发现T_P = f(r)的平均颗粒温度低于T_P-恒定的情况。而且,发现对于特定的几何形状,各种管道和粒径,各种粒子的热导率,恒定的热通量和Re数,无量纲温差准则是[Bi×(d_P / D)]的连续函数。 。该数字代码可以将经典的Bi固体含量标准扩展到各种气体颗粒系统和不同的操作条件。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号