首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Numerical analysis of the fin spacing effect on the horseshoe vortex system evolution in a two-rows finned-tube heat exchanger
【24h】

Numerical analysis of the fin spacing effect on the horseshoe vortex system evolution in a two-rows finned-tube heat exchanger

机译:两行翅片管式换热器中翅片间距对马蹄涡系统演变影响的数值分析

获取原文
获取原文并翻译 | 示例
           

摘要

Purpose - In finned-tube heat exchangers, the array of tubes generates three-dimensional vortices at fin-tube junctions. Theses vortices known as horseshoe vortex (HSV) system are responsible of flow mixing and heat transfer increase. The purpose of this paper is to focus on the effect of the fin spacing on the formation, the spatial evolution and dissipation of the HSV system at fin-tube junctions in a two-rows finned-tube heat exchanger. The global characterisation of the heat exchanger performance is also presented. Design/methodology/approach - The flow structure is numerically analysed through the use of computational fluid dynamics tools. The different vortices of the HSV system are highlighted and quantitatively analysed at each fin-tube junction with vorticity, wall shear stress analysis and two-dimensional streamline plots around tubes. Findings - The results show that the primary and secondary vortices of the HSV system have antagonistic behaviors with respect to the azimuthal angle variation. The optimum fin spacing ratio E/D that generates the most intense first primary vortex in the HSV system lies between 0.20 and 0.25. Similar observation are made on the thermalhydraulic performance of the heat exchanger as j/f exhibits a maximum value for a fin spacing ratio E/D = 0.25. Research limitations/implications - A detailed URANS simulation shows that even if the flow remains steady in the core of the heat exchanger, unsteady behavior is noticed in the wake of the second tube. Originality/value - In this study, the flow topology is quantitatively analysed in successive radial planes around heat exchanger tubes. The strong effect of the fin spacing on the HSV generation and dissipation is deeply analysed.
机译:目的-在翅片管热交换器中,管阵列在翅片管连接处产生三维涡流。这些涡流称为马蹄涡流(HSV)系统,负责流动混合和传热增加。本文的目的是集中研究翅片间距对两排翅片管换热器中翅片管连接处HSV系统的形成,空间演化和耗散的影响。还介绍了热交换器性能的总体特征。设计/方法/方法-使用计算流体动力学工具对流动结构进行数值分析。 HSV系统的不同涡流被突出显示,并在每个翅片管连接处进行了涡流,壁面剪切应力分析和围绕管的二维流线图进行了定量分析。研究结果-结果表明,HSV系统的初级和次级涡流相对于方位角变化具有拮抗行为。在HSV系统中产生最强烈的第一初级涡旋的最佳翅片间距比E / D在0.20至0.25之间。由于j / f在翅片间距比E / D = 0.25时显示出最大值,因此对热交换器的热工水力性能也进行了类似的观察。研究的局限性/意义-详尽的URANS模拟表明,即使流量在热交换器的芯中保持稳定,在第二根管的尾部也会观察到不稳定的行为。原创性/价值-在这项研究中,在热交换器管周围的连续径向平面中对流动拓扑进行了定量分析。深入分析了翅片间距对HSV产生和耗散的强烈影响。

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