首页> 外文期刊>International Journal of Heat and Fluid Flow >Flow patterns and turbulence effects in large cylinder arrays
【24h】

Flow patterns and turbulence effects in large cylinder arrays

机译:大型气缸阵列中的流型和湍流效应

获取原文
获取原文并翻译 | 示例
       

摘要

Studies on flow-induced vibrations in large tube bundles are usually focused solely on frequency analysis, without considering the flow patterns which are responsible for the fluid forces. Furthermore, investigations which involve variations in the spacing ratios do not separate transversal and longitudinal proximity effects. The purpose of this article is to separately analyze the influence of the transversal (T/D) and longitudinal (L/D) spacing ratios of a confined in-line cylinder array with five rows on the flow characteristics and to identify flow patterns. The laser Doppler anemometry technique was employed to acquire the mean velocity and its fluctuations in the transversal and longitudinal directions between the cylinder rows. Strouhal numbers and regimes reported in the literature were identified in the experiments. The same regime did not always persist along all cylinder rows for a given spacing ratio, as a result of the combined longitudinal and transversal proximity effects and also of the generation of turbulence by the array. For the smallest T/D ratio, a quasi-steady behavior associated with the biased flow pattern was noted in the experimental set-up and flip-flopping was observed in one case. Additionally, the flow characteristics in these arrays diverged from tube bundle classifications described in the literature. The behavior of the fluid forces and susceptibility to vibrations in the array were predicted based on the turbulence intensity of the incident flow of the cylinders. The results reinforced the need to extend flow pattern investigations to arrays with more cylinder rows and to consider both transversal and longitudinal proximity effects, when studying flow-induced vibrations.
机译:大管束中流动引起的振动的研究通常只关注频率分析,而不考虑引起流体力的流动模式。此外,涉及间距比变化的研究没有分离横向和纵向邻近效应。本文的目的是分别分析五行密闭直列圆柱阵列的横向(T / D)和纵向(L / D)间距比对流动特性的影响,并确定流型。激光多普勒风速仪技术用于获取平均速度及其在圆柱行之间的横向和纵向的波动。实验中确定了文献中报道的斯特劳哈尔数和状态。由于组合的纵向和横向邻近效应以及阵列产生的湍流,相同的状态并不总是在给定的间距比下沿所有圆柱行都持续存在。对于最小的T / D比,在实验设置中注意到了与偏流模式相关的准稳态行为,在一种情况下观察到了触发器。另外,这些阵列中的流动特性不同于文献中描述的管束分类。基于汽缸的入射流的湍流强度预测了流体力的行为和阵列中的振动敏感性。结果强调了在研究流动引起的振动时,需要将流型研究扩展到具有更多圆柱行的阵列,并考虑横向和纵向邻近效应。

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