Analysis of Local Scour around Double Piers in Tandem Arrangement in an S-Shaped Channel under Ice-Jammed Flow Conditions

被引:0
|
作者
Dong, Shihao [1 ]
Zhang, Zhenhua [1 ]
Li, Zhicong [1 ]
Chen, Pangpang [1 ]
Wang, Jun [1 ]
Li, Guowei [2 ]
机构
[1] Hefei Univ Technol, Sch Civil & Hydraul Engn, Hefei 230009, Peoples R China
[2] Univ Northern British Columbia, Fac Sci & Engn, Prince George, BC V2N 4Z9, Canada
基金
中国国家自然科学基金;
关键词
ice jam; S-shaped channel; tandem arrangement; double piers; local scour; CLEAR-WATER SCOUR; DEBRIS;
D O I
10.3390/w16192831
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The stability of bridge foundations is affected by local scour, and the formation of ice jams exacerbates local scour around bridge piers. These processes, particularly the evolution of ice jams and local scour around piers, are more complex in curved sections than in straight sections. This study, based on experiments in an S-shaped channel, investigates how various factors-the flow Froude number, ice-water discharge rate, median particle diameter, pier spacing, and pier diameter-affect the maximum local scour depth around double piers in tandem and the distribution of ice jam thickness. The results indicate that under ice-jammed flow conditions, the maximum local scour depth around double piers in tandem is positively correlated with the ice-water discharge rate, pier spacing, and pier diameter and negatively correlated with median particle diameter. The maximum local scour depth is positively correlated with the flow Froude number when it ranges from 0.1 to 0.114, peaking at 0.114. Above this value, the correlation becomes negative. In curved channels, the arrangement of double piers in tandem substantially influences ice jam thickness distribution, with increases in pier diameter and spacing directly correlating with greater ice jam thickness at each cross-section. Furthermore, ice jam thickness is responsive to flow conditions, escalating with higher ice-water discharge rates and decreasing flow Froude numbers.
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页数:17
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