恒流条件下间断跨越管道的水动力

Yunfei Teng, Liang Cheng, H. An, F. Tong, T. Griffiths, Wei Sun, Jiawei Chi, Zhijian Xiong
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引用次数: 1

摘要

本文研究了在稳定流作用下,间断跨越管道的水动力特性。通过改变非跨越长度(B)与总长度(L)之比(即阻塞比B / L),研究间歇局部跨越截面对整体水动力行为的影响。实验中还测试了间隙高度(G)与直径(D)之比(即间隙比G / D)范围和亚临界区域4种不同雷诺数(Re)。结果表明:1)当间隙比一定时,在Re = 5.5 × 104时,平均阻力随堵塞比的减小而缓慢增大,而平均升力随堵塞比的减小而显著减小;(2)在阻塞比一定的情况下,增大间隙比,平均阻力增大,平均升力减小。此外,基于现有的数据集,提出了一些简单的方法来估计局部跨越几何对水动力阻力和升力的整体影响。
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Hydrodynamic Forces on Intermittently Spanning Pipelines in Steady Currents
Experimental investigations on the hydrodynamic forces on an intermittently spanning pipeline exposed to steady currents were carried out. The effect of intermittent local spanning sections on the global hydrodynamic behavior was studied by changing the ratio between the non-spanning length (B) and the total length (L), namely the blocking ratio B / L. A range of gap height (G) to diameter (D) ratios, i.e. gap ratio G / D, and 4 different Reynolds numbers (Re) in the subcritical region were tested in the experiments. The results show: i) for a certain gap ratio, the mean drag increases gently with the decreasing blocking ratio at Re = 5.5 × 104, whereas the mean lift decreases significantly with the decreasing blocking ratio at all values of Re tested; and ii) for a certain blocking ratio, increasing the gap ratio leads to an increase in mean drag and decrease in mean lift. Further, simple approaches are proposed based on the present dataset for estimating the global effects on hydrodynamic drag and lift forces due to local spanning geometry.
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