...
首页> 外文期刊>International Journal of Mechanical Sciences >Thermal performance modeling of turbulent flow in multi tube in tube helically coiled heat exchangers
【24h】

Thermal performance modeling of turbulent flow in multi tube in tube helically coiled heat exchangers

机译:管螺旋盘绕热交换器多管湍流的热性能模型

获取原文
获取原文并翻译 | 示例

摘要

Highlights?Heat transfer characteristics and performances of multi tubes in tube helically coiled heat exchangers.?Parametric study for the effects of number of inner tubes and operating/geometrical parameters.?Correlations for the performance indices in terms of operating/geometrical parameters.AbstractHeat transfer characteristics and performances of a multi tubes in tube helically coiled (MTTHC) heat exchanger are numerically investigated. The effects of operating and geometrical parameters on the thermal and hydrodynamic performances of the coil are studied and presented for turbulent flow regimes. The current simulation model is compared and validated with available experimental results and a good agreement is obtained. The numerical results showed that, the overall heat transfer coefficient (Uo)enhanced by 23% and 28% with increasing Reynolds numbers of hot and cold water (RehwandRecw) from 9000 to17000 and 14,000 to 22,000, respectively. Coil effectiveness (ε) increased by 28% and 60% with increasing coil diameter (Dc) from 100–150?mm and 100 to 250?mm, respectively and increased with 20% with increasing the number of inner tubes (N) from 1 to 5. Moreover, the maximum values of the thermal-hydrodynamic performance index and coil effectiveness occurs atN?=?3. The coil pitch has slight effect on the coil performance. Comparisons between the presented MTTHC with concentric tube in tube helically coiled (CTTHC) and multi tubes in straight tube (MTST) heat exchangers are conducted and showed that MTTHC heat exchangers displayed higher thermal performance. General numerical correlations for thermal and hydraulic coil performance are developed within acceptable errors.Graphical abstractPhysical model: (a) Geometry of multi tubes in tube helical coil, (b) Inner tubes configuration (c) section views of the studied coils.Display Omitted]]>
机译:<![cdata [ 突出显示 管螺旋盘绕热交换器中多管的传热特性和多管的性能。 内管数量效果的参数研究操作/几何参数。 < /C E:Abstract-sec> 抽象 螺旋盘绕管中多管的传热特性和多管的性能( mtthc )热交换器进行数值研究。研究了操作和几何参数对线圈的热和流体动力学性能的影响,并呈现出湍流状态。使用可用的实验结果进行比较和验证当前​​仿真模型,并获得了良好的协议。数值结果表明,总传热系数( u o 增强23%和28%增加雷诺数的炎热和冷水( re hw re CW )分别为9000到17000和14,000到22,000。线圈有效性(ε)随着线圈直径的增加增加了28%和60%( d c )从100-150?mm和100到250?mm,分别增加20%,随着内部管的数量增加( n )从1增加此外,热 - 流体动力学性能指标和线圈有效性的最大值发生在 n ?=?3。线圈间距对线圈性能具有轻微影响。在管螺旋盘绕(CTTHC)中具有同心管和直管(MTST)热交换器的多管之间的呈现MTTHC之间的比较并显示出MTTHC热交换器显示出较高的热性能。热和液压线圈性能的一般数值相关性在可接受的错误中开发。 图形抽象 物理模型:(a)管螺旋线圈中多管的几何形状,(b)内管配置(c)剖面图所研究的线圈视图。 显示省略 ]]>

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