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A Case Study on Pier Scour Monitoring at Incheon Bridge in Korea

机译:韩国仁川大桥桥墩冲刷监测的案例研究

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The local scour is a critical factor of the bridge stability. Scour depths are usually determined using empirical formulas or numerical studies or physical model tests in more complex cases. But all methods to estimate scour depths always include uncertainties resulting from hydraulic and geology conditions, therefore it is necessary to overcome these by in-situ monitoring for real bridge scour. In this study, the local scour depths were evaluated at a important pier of Incheon Bridge. Generally, local scour is closely related to bottom characteristic and bottom shear stress. If tidal current is strong and ground condition is soft, bottom shear stress is high so the possibility of local scour occurrence is increasing. As the result of bottom shear stress evaluation, W1 pier of cable-stayed bridge section is selected for scour monitoring. Two monitoring methods are applied. One is a periodic scour survey using a boat. The other is a installation of the profiling scour monitoring system which was newly developed, attaching a profiling scan sonar for this study. The measurements of the new system are compared to measurements of the survey using a boat. The results indicate that the survey using a boat is effective in evaluating the maximum scour depth and the profiling scour monitoring using a new system would be more cost- effective than the previous scour monitoring system if the pier foundation consist of many piles with large diameter.
机译:局部冲刷是桥梁稳定性的关键因素。在更复杂的情况下,通常使用经验公式或数值研究或物理模型测试来确定冲刷深度。但是,所有估算冲刷深度的方法总是包含水力和地质条件带来的不确定性,因此有必要通过对实际桥梁冲刷进行现场监测来克服这些不确定性。在这项研究中,对仁川大桥重要码头的局部冲刷深度进行了评估。通常,局部冲刷与底部特征和底部剪切应力密切相关。如果潮流很强且地面条件较软,则底部剪切应力较高,因此发生局部冲刷的可​​能性增加。作为底部剪应力评估的结果,选择斜拉桥断面的W1墩进行冲刷监测。应用了两种监视方法。一种是使用船的定期冲刷调查。另一个是新开发的配置文件搜索监视系统的安装,该系统附有用于此研究的配置文件扫描声纳。使用船将新系统的测量结果与测量结果进行比较。结果表明,使用船进行勘测可有效评估最大冲刷深度,如果墩基由许多大直径的桩组成,则使用新系统进行的轮廓冲刷监测将比以前的冲刷监测系统更具成本效益。

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