首页> 外文期刊>International Journal of Heat and Mass Transfer >Comparative study of heat transfer enhancement and pressure drop for fin-and-circular tube compact heat exchangers with sinusoidal wavy and elliptical curved rectangular winglet vortex generator
【24h】

Comparative study of heat transfer enhancement and pressure drop for fin-and-circular tube compact heat exchangers with sinusoidal wavy and elliptical curved rectangular winglet vortex generator

机译:带有正弦波和椭圆形弯曲矩形小翼涡流发生器的翅片和圆管紧凑型热交换器的传热增强和压降比较研究

获取原文
获取原文并翻译 | 示例
       

摘要

Vortex generation has emerged as a promising passive method for enhancing air-side heat transfer. In the present work, two-dimensional numerical analysis is carried out to examine the thermo-fluid analysis of fin-and-tube compact heat exchangers with sinusoidal wavy and elliptical curved type rectangular winglet vortex generator (RWVG) having varying Reynolds number ranges from 400 to 1000. The wavy and curved VGs are also placed as up and down configurations with respect to flow direction. Thus the effect of the different common flow down (CFD) configurations of wavy-up, wavy-down, curved-up, curved-down and flat rectangular winglet is compared with baseline configuration (non-winglet case) for flow structure, temperature distribution and pressure distribution for fin-and-tube compact heat exchanger with seven inline circular tube arrangement. They are also compared with thermo-hydraulic performance criterions which include Nusselt number (Nu), Pressure drop (Delta P), friction factor (f), London area goodness factor (j/f). Appreciable improvement in heat transfer characteristics is observed with wavy and curved rectangular winglet with a moderate loss in pressure. Compared with the non-winglet baseline and flat RWVG case, the heat transfer performance of the fin-and-tube heat exchanger is significantly improved with wavy-up and down and curved-up and down configurations. Further, it is also noted that up-wavy RWVG showed the best heat transfer improvement compared to any other RWVG configuration considered. However, Wavy-up configuration has the lowest values of j/f than others and curved-down has higher values of j/f than others. Thus, curved-down RWVG found suitable than other cases of RWVG as far as London goodness factor strategy. (C) 2019 Elsevier Ltd. All rights reserved.
机译:涡流的产生已成为一种有希望的增强空气侧传热的被动方法。在本工作中,进行了二维数值分析,以检查具有雷诺数范围从400到400的正弦波状波浪形和椭圆弯曲型矩形小翼涡流发生器(RWVG)的翅片管紧凑型换热器的热流体分析。到1000。波浪形和弯曲的VG相对于流向也以上下配置放置。因此,比较了波浪形,波浪形,弯曲形,弯曲形,向下形和扁平矩形小翼的不同常见向下流动(CFD)配置的影响,并将其与流线结构,温度分布的基线配置(非小翼情况)进行了比较七个直列圆形管布置的翅片管紧凑型热交换器的压力和压力分布。它们还与热工液压性能标准进行了比较,其中包括努塞尔特数(Nu),压降(Delta P),摩擦因数(f),伦敦面积优度因数(j / f)。波浪形和弯曲的矩形小翼在压力损失适中的情况下,传热特性得到了明显改善。与非小翼基线和平坦RWVG情况相比,翅片管式换热器的波纹向上和向下以及弯曲向上和向下的配置显着提高了传热性能。此外,还应注意,与所考虑的任何其他RWVG配置相比,波浪形RWVG表现出最佳的传热改进。但是,波浪形配置的j / f值最低,而向下弯曲的配置的j / f值高。因此,就伦敦良性因子策略而言,向下弯曲的RWVG被认为比其他情况更适合。 (C)2019 Elsevier Ltd.保留所有权利。

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