...
首页> 外文期刊>Applied Ocean Research >Physical modeling and swirling strength analysis of vortex shedding from near-bed piggyback pipelines
【24h】

Physical modeling and swirling strength analysis of vortex shedding from near-bed piggyback pipelines

机译:近床背负式管道涡旋脱落的物理模型和旋流强度分析

获取原文
获取原文并翻译 | 示例
           

摘要

The vortex shedding from near-bed piggyback pipelines in a steady flow has been investigated experimentally in a large water flume. A specially arranged PIV system with upward-illumination of pulsed laser arrays from the flume bottom was employed for the flow visualization and quantitative measurement of the lee-wake flow in a sub-critical regime around the piggyback pipelines in the proximity of a plane boundary. Based on dimensional analyses, a dimensionless maximum swirling strength (W_m) is used for analyzing the vortex shedding intensity and its frequency. Time-averaged swirling strength analyses indicate that the lee-wake patterns for the near-bed piggyback pipelines are dependent on the configuration factors, including the gap-to-diameter ratio (e/D), the spacing-to-diameter ratio (G/D), and the diameter ratio of two pipes (d/D), etc. The swirling strength in the lee-wake is obviously asymmetric for piggyback pipelines with bed proximity. For the fixed values of G/D and d/D, the maximum swirling strength decreases with the decrease of e/D. Moreover, for the examined G/D range (0 < G/D < 0.5), minimum values of W_m and corresponding VIV amplitude for the piggyback pipelines are evidently within the same range of spacing-to-diameter ratio G/D ≈ 0.05-0.20.
机译:在大型水槽中已对来自近床背back式管道稳定流中的涡流进行了实验研究。专门设计的PIV系统具有从烟道底部向上照射脉冲激光阵列的功能,用于流可视化和定量测量背负式管道在背负管线周围平面边界附近的次临界状态下的背风流。基于尺寸分析,将无量纲的最大涡旋强度(W_m)用于分析涡旋脱落强度及其频率。时间平均涡旋强度分析表明,近床背back式管道的回风模式取决于构型因素,包括缝隙直径比(e / D),间距直径比(G) / D)以及两个管道的直径比(d / D)等。背靠式尾流中的旋流强度对于靠近床层的背负式管线显然是不对称的。对于G / D和d / D的固定值,最大涡旋强度随e / D的降低而降低。此外,对于所检查的G / D范围(0

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