Effect of hydrodynamic pressure on performance-based design of a deepwater bridge
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摘要: 通過一個深水橋墩實例對中國與日本橋梁抗震規范的地震動水壓力計算方法進行比較研究,分析規范關于動水壓力計算的異同點,計算表明兩者結果相差較大.對橋墩的動水壓力進行數值模擬計算,考察動水壓力沿深水橋梁高程的分布.為研究動水壓力對橋梁整體結構動力特性的影響,以主跨260 m的牛根大橋為背景建立有限元計算模型,采用附加質量法進行計算.結果表明,附加質量法求得的位移和彎矩比不考慮動水作用的情況有較大增幅,也表明動水壓力對橋梁的性能有較大的影響.在深水橋梁的性能設計理論與應用領域中,水與橋墩的相互作用問題有必要進行進一步的研究.Abstract: A comparative study was performed on the calculation methods of earthquake hydrodynamic pressure between Chinese and Japanese seismic codes of bridges through a calculation example of a deepwater pier,and the similarities and differences of both the methods were analyzed.A huge difference was obtained from both the results.The earthquake hydrodynamic pressure of a pier in deep water was calculated by numerical simulation and the distribution of pressure along the pier height was investigated.A finite element model of the 260-meter-span Ushine Bridge was built and an added mass method was applied to the model to study the influence of earthquake hydrodynamic pressure on the performance of the whole bridge. The results showed that the displacement and moment obtained by the added mass method was rather more than those without consideration of water. In the performance-based design theory of deepwater bridges and its application field, more studies were needed on the problem of the interaction between piers and water.
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Key words:
- deepwater bridge /
- added mass /
- hydrodynamic pressure /
- performance-based design
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