首页> 外文期刊>Journal of Heat Transfer >Convective Heat Transfer in a High Aspect Ratio Minichannel Heated on One Side
【24h】

Convective Heat Transfer in a High Aspect Ratio Minichannel Heated on One Side

机译:一侧加热的高纵横比小通道中的对流传热

获取原文
获取原文并翻译 | 示例
       

摘要

Experimental results are presented for single-phase heat transfer in a narrow rectangular minichannel heated on one side. The aspect ratio and gap thickness of the test channel were 29:1 and 1.96 mm, respectively. Friction pressure drop and Nusselt numbers are reported for the transition and fully turbulent flow regimes, with Prandtl numbers ranging from 2.2 to 5.4. Turbulent friction pressure drop for the high aspect ratio channel is well-correlated by the Blasius solution when a modified Reynolds number, based upon a laminar equivalent diameter, is utilized. The critical Reynolds number for the channel falls between 3500 and 4000, with Nusselt numbers in the transition regime being reasonably predicted by Gnielinski's correlation. The dependence of the heat transfer coefficient on the Prandtl number is larger than that predicted by circular tube correlations, and is likely a result of the asymmetric heating. The problem of asymmetric heating condition is approached theoretically using a boundary layer analysis with a two-region wall layer model, similar to that originally proposed by Prandtl. The analysis clarifies the influence of asymmetric heating on the Nusselt number and correctly predicts the experimentally observed trend with Prandtl number. A semi-analytic correlation is derived from the analysis that accounts for the effect of aspect ratio and asymmetric heating, and is shown to predict the experimental results of this study with a mean absolute error (MAE) of less than 5% for 4000 <Re< 70,000.
机译:给出了在一侧加热的狭窄矩形微型通道中单相传热的实验结果。测试通道的长宽比和间隙厚度分别为29:1和1.96 mm。报告了过渡和完全湍流状态下的摩擦压降和Nusselt数,Prandtl数在2.2到5.4之间。当使用基于层流等效直径的修正雷诺数时,Blasius解决方案可以很好地关联高纵横比通道的湍流摩擦压降。该通道的临界雷诺数介于3500和4000之间,过渡态的Nusselt数可以通过Gnielinski的相关性合理预测。传热系数对普朗特数的依赖性大于圆管相关性所预测的依赖性,这很可能是不对称加热的结果。理论上,采用边界层分析和两区域壁层模型可以解决非对称加热条件的问题,这与Prandtl最初提出的模型相似。该分析阐明了不对称加热对Nusselt数的影响,并正确预测了实验观察到的带有Prandtl数的趋势。从分析中得出半解析相关性,该相关性考虑了纵横比和不对称加热的影响,并显示出对4000 <Re的平均绝对误差(MAE)小于5%可以预测本研究的实验结果。 <70,000。

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