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Study on Local Scouring Monitoring of Hangzhou Bay Bridge

机译:杭州湾跨海大桥局部冲刷监测研究

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Hangzhou Bay Bridge is a crossing-sea bridge that spans the Hangzhou Bay of China, which has a total length of 36 kilometers and is the fourth longest crossing-sea bridge in the world. Hangzhou Bay has strong tides and large tidal range, the suspended sediment and bed material have the same particle size, the seabed sediment are complex and changeable, the development of the seabed groove changes rapidly. So local scour of the piles becomes a potential danger for the safe operation of the bridge. The pile of crossing-sea bridge lie in a complex three-dimension flow, and local scour could cause instability of substructure up to whole bridge failures. Facing scour risk, the bridge scour monitoring system is present and set out to deployfor effectively assessment scour risk of piles.. Besides preventing the risks of catastrophic failures, real-time field scour data can also be used to calibrate and refine the existing bridge scour simulation models. This study carried out local scouring monitoring on the sea platform area of the Hangzhou Bay Bridge. Based on the monitoring results, a formula for calculating the local scouring depth of pile under the action of bidirectional flow in Hangzhou Bay was proposed analyzed. At the same time, the evolution of scour holes in offshore platforms are introduced. A real-time bridge scour monitoring system based on fiber Bragg grating (FBG) is proposed based on the study of erosion mechanism. The monitoring system can directly obtain the changes of external pressure, displacement and other parameters. It has the advantages of strong anti-interference ability and high accuracy.
机译:杭州湾跨海大桥是横跨中国杭州湾的跨海大桥,全长36公里,是世界上第四长的跨海大桥。杭州湾潮汐强,潮差大,悬浮泥沙和床层物质粒径相同,海底泥沙复杂多变,海床沟发育迅速变化。因此,桩的局部冲刷对桥梁的安全运行构成了潜在的危险。跨海桥梁堆位于复杂的三维流中,局部冲刷可能会导致子结构的不稳定性,直至整个桥梁破坏。面对冲刷风险,存在桥梁冲刷监控系统,该系统可以部署以有效评估桩的冲刷风险。除了防止灾难性破坏的风险,实时现场冲刷数据还可以用于校准和完善现有的桥梁冲刷仿真模型。本研究对杭州湾跨海大桥海域进行了局部冲刷监测。根据监测结果,提出了计算杭州湾双向流动作用下桩局部冲刷深度的公式。同时,介绍了海上平台冲孔的演变。在研究侵蚀机理的基础上,提出了一种基于光纤布拉格光栅(FBG)的实时桥梁冲刷监测系统。监控系统可以直接获取外部压力,位移等参数的变化。具有抗干扰能力强,精度高的优点。

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