首页> 外文期刊>Journal of Heat Transfer >Effect of Rotation and Surface Roughness on Heat Transfer Rate to Flow through Vertical Cylinders in Steam Condensation Process
【24h】

Effect of Rotation and Surface Roughness on Heat Transfer Rate to Flow through Vertical Cylinders in Steam Condensation Process

机译:旋转和表面粗糙度对蒸汽在冷凝过程中流过立式圆柱的传热速率的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The enhancement in the rate of the heat transfer resulting from rotating smooth and rough vertical cylinders, of 1.28 and 21.75 μm average roughness, respectively, are experimentally studied. Experiments were carried out for cooling fluid Reynolds numbers from 3300 to 7800 with varying the rotational speed up to 280 rpm. Experimental runs at the stationary case showed an acceptable agreement with the theoretical values. The experimental Nusselt number values at various rotational speeds are correlated as functions of Reynolds, Weber, and Prandtl numbers for smooth and rough surfaces. The correlated equations were compared with the correlation obtained by another author. The results show that the enhancement of the heat transfer rate becomes more appreciable for low Reynolds numbers at high rotational speeds and for high Reynolds numbers at low rotational speeds. The rotation causes an enhancement in the overall heat transfer coefficient of ~89% at Re=7800, We=1084, and Pr=1.48 for smooth surface and of ~13.7% at Re=4700, We=4891, and Pr=1.696 for rough surface. Also, the enhancement in the heat transfer rates utilizing rotary surface becomes more pronounced for the smooth surface compared with the rough one, therefore the choice of the heat transfer surface is very important. The present work shows a reduction in the heat transfer rate below its peak value depending on the type of the heat transfer surface. It is shown that the enhancement in the heat transfer, i.e., enhancement in the Nusselt number, depends on the Weber number value and the surface type while the Nusselt number value mainly depends on the Reynolds and Prandtl numbers. Correlated equation have been developed to represent the Nusselt number values as functions of the Weber and Reynolds numbers within the stated ranges of the parameters.
机译:实验研究了由旋转的光滑圆柱体和粗糙的垂直圆柱体分别导致的平均粗糙度为1.28和21.75μm的传热速率的提高。进行了冷却流体雷诺数从3300到7800的实验,并将转速改变到280 rpm。在固定情况下的实验表明与理论值可以接受。在光滑和粗糙表面上,各种转速下的实验Nusselt值与雷诺,韦伯和普朗特数的函数相关。将相关方程与另一作者获得的相关进行了比较。结果表明,对于高转速下的低雷诺数和对于低转速下的高雷诺数,传热速率的提高变得更加明显。旋转使光滑表面的整体传热系数增加,Re = 7800,We = 1084和Pr = 1.48时约为89%,Re = 4700,We = 4891和Pr = 1.696时整体传热系数达到13.7%。粗糙的表面。而且,与粗糙表面相比,利用旋转表面提高传热速率对于光滑表面变得更加明显,因此传热表面的选择非常重要。目前的工作表明,根据传热表面的类型,传热速率会降低到其峰值以下。已经表明,传热的增强,即努塞尔数的增强,取决于韦伯数值和表面类型,而努塞尔数的值主要取决于雷诺数和普朗特数。已经开发出相关方程式,以表示在参数规定范围内韦伯数和雷诺数的函数的努塞尔数值。

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