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Effect of different flow regimes on free convection heat transfer from isothermal convex bodies over all range of Rayleigh and Prandtl numbers

机译:在瑞利和普朗特数的所有范围内,不同流动方式对等温凸体自由对流换热的影响

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摘要

In the present study, effect of different flow regimes on free convection heat transfer has been examined. In the light of this, a novel analytical method is developed to calculate free convection heat transfer from isothermal convex bodies with arbitrary shape over all range of Rayleigh number in fluids with any Prandtl number. The crux of this method is based on the concept of dynamic behaviors existing in natural convection flow. In the previous models the Body Gravity Function (BGF) and Turbulent Function (TF) have been taken as constant values. In this study, BGF accounts for the effect of body shape and orientation with respect to gravity vector in laminar free convection. Besides, TF accounts for the impact of Prandtl number, body shape and orientation with regard to gravity vector in turbulent free convection. By contrast, it is shown that these two parameters undergo a change through the variation of Rayleigh number and cannot be considered as a constant. These two parameters are modeled based upon the thermal resistance concept. Moreover, two transition criteria happening in free convection heat transfer will be obtained according to this new analytical method (conduction-laminar and laminar-turbulent transitions). Finally, three models (models 1, 2 and 3) are proposed for calculation free convection heat transfer and present results for ten isothermal convex bodies with various aspect ratios (0.298 ≤ (A~(1/2))/P ≤ 2.470) have been compared with the available experimental and numerical data. Here, the results of model 2 are almost equal to those of model 3. Also, the results of model 1 are more precise than those of model 3 while the parameters computation of model 1 is more intricate in comparison with model 3. On the one hand, the model 1 has an average difference <6 % vis-a-vis numerical data in entire range of Rayleigh number (laminar and turbulent). On the other hand, the average difference of model 1 is not more than 8 % versus experimental data in complete range of Rayleigh number. Outstanding agreement exhibits that the proposed model has a great potential to predict free convection heat transfer from isothermal convex bodies in the whole range of Rayleigh numbers in fluids with any Prandtl number.
机译:在本研究中,已经研究了不同流动方式对自由对流换热的影响。有鉴于此,开发了一种新颖的分析方法,可以计算在任何普朗特数的流体中,在瑞利数的所有范围内,任意形状的等温凸体的自由对流传热。该方法的关键是基于自然对流中存在的动态行为的概念。在以前的模型中,人体重力函数(BGF)和湍流函数(TF)被当作常数。在这项研究中,BGF考虑了层流自由对流中人体形状和方向对重力矢量的影响。此外,TF考虑了湍流自由对流中普朗特数,体形和取向对重力矢量的影响。相比之下,表明这两个参数通过瑞利数的变化而发生变化,因此不能视为常数。这两个参数是基于热阻概念建模的。此外,根据这种新的分析方法,将获得在自由对流传热中发生的两个转变准则(传导层流和层流湍流转变)。最后,提出了三个模型(模型1、2和3)来计算自由对流传热,并给出了十个等宽凸率(0.298≤(A〜(1/2))/ P≤2.470)的等温凸体的计算结果。与可用的实验和数值数据进行了比较。在此,模型2的结果几乎等于模型3的结果。此外,模型1的结果比模型3的结果更精确,而模型1的参数计算与模型3相比更加复杂。另一方面,模型1在整个瑞利数(层流和湍流)范围内相对于数值数据的平均差异小于6%。另一方面,模型1的平均差异相对于瑞利数完整范围内的实验数据不超过8%。出色的协议表明,该模型具有很大的潜力,可以预测在任何普朗特数的流体中,在整个瑞利数范围内,等温凸体的自由对流传热。

著录项

  • 来源
    《Heat and mass transfer》 |2016年第8期|1665-1682|共18页
  • 作者

    Pouria Arabi; Khosrow Jafarpur;

  • 作者单位

    School of Mechanical Engineering, Shiraz University, Molla-Sadra street, 71348-51154, Shiraz, Iran;

    School of Mechanical Engineering, Shiraz University, Molla-Sadra street, 71348-51154, Shiraz, Iran;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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