...
首页> 外文期刊>International Journal of Heat and Mass Transfer >Heat transfer enhancement by a wall-mounted flexible vortex generator with an inclination angle
【24h】

Heat transfer enhancement by a wall-mounted flexible vortex generator with an inclination angle

机译:壁挂式柔性涡流发生器具有倾斜角度的传热增强

获取原文
获取原文并翻译 | 示例

摘要

Vortex generators have been widely used in heat transfer system to enhance thermal performance by promoting fluid mixing. The convective heat flux may be improved significantly, but the installation of vortex generators into the heat transfer system is necessarily accompanied by the penalty of increasing mechanical energy loss. In the present study, two-dimensional numerical simulation is performed to investigate the effects of the self-sustained oscillating motion of flexible vortex generators on heat transfer. The wall-mounted flexible flag with an inclination angle is used to promote the fluid mixing and increase the heat transfer without much increasing the energy loss. The fluid-flexible body-thermal interaction is considered on the framework of the immersed boundary method. The influence of the inclination angle and the bending rigidity of the flexible vortex generator on the thermal performance is mainly examined. Increasing the inclination angle is observed to induce the instability of the present system, by which the self-sustained flapping motion of the flexible vortex generator favorable in terms of the heat transfer is derived. The thermal performance of the present system is significantly improved due to vortex merging process when the mode transition of the flapping motion takes place. The dynamic mode decomposition (DMD) is used to quantitatively analyze the relation between the flow structures and the temperature fluctuations. The comparison of the dynamic modes extracted from the vorticity and temperature fields indicates that the flow structures driven by the vortex generator significantly contribute to the mixing of the heated fluid near the wall with the cooled fluid passing through the center region. The temperature fields are reconstructed by using several dominant modes extracted from the present data sets.
机译:涡旋发电机已广泛用于传热系统,以通过促进流体混合来增强热性能。热通量可以显着提高,但是将涡流发生器安装到传热系统中必然伴随着增加机械能量损失的惩罚。在本研究中,进行二维数值模拟,以研究柔性涡流发生器自持续振荡运动对热传递的影响。壁挂式的柔性标志具有倾斜角度,用于促进流体混合并增加热传递而不会增加能量损失。在浸没边界法的框架上考虑流体柔性的主体 - 热相互作用。柔性涡流发生器倾斜角度和弯曲刚度的影响主要检查了热性能的影响。观察到增加倾斜角度以诱导本系统的不稳定性,通过该系统,通过该系统的柔性涡流发生器的自持续抖动运动来推导出来。当拍打运动的模式转换发生时,由于涡流合并过程,本系统的热性能显着提高。动态模式分解(DMD)用于定量分析流动结构与温度波动之间的关系。从涡流和温度场提取的动态模式的比较表明,由涡流发生器驱动的流动结构显着地有助于将加热的流体与穿过中心区域的冷却流体的混合。通过使用从当前数据集中提取的若干主导模式来重建温度场。

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