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Joint earthquake, wave and current action on the pile group cable-stayed bridge tower foundation: An experimental study

机译:桩基斜拉桥桥塔基础联合地震,波浪和当前作用:实验研究

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摘要

Sea-crossing cable-stayed bridges located in areas of active seismicity are generally subjected to earthquakes, waves, current and other dynamic loads of potential threat during their service period. The pile group foundation, which is composed of bored piles and elevated pile caps, has been applied widely for pylons to ensure the stability of cable-stayed bridge towers. Owing to its large dimensions, complexity and marked three-dimensional characteristics, it is difficult to model the precise dynamic response of the pile group pylon foundation under the joint action of various dynamic loads by means of existing theory. In this paper, an experimental study is presented for a 11100 scale dynamic test model of a bridge tower with a grouped pile foundation. The model was designed according to elasticity-gravity similarity laws and tested using the Earthquake, Wave and Current Joint Simulation System. The structural response of the bridge tower in air and water conditions with and without incident sine waves and current was investigated. The test results may be used for engineering practice and further research. (C) 2017 Published by Elsevier Ltd.
机译:位于主动地震区域的海关斜拉桥通常在其服务期间经受地震,波浪,电流和其他动态威胁的动态负荷。由钻孔桩和升高的桩帽组成的桩基基础已被广泛应用于塔架,以确保斜拉桥塔的稳定性。由于其尺寸大,复杂性和三维特性,难以通过现有理论模拟各种动态载荷的联合作用下桩群塔基基础的精确动态响应。本文介绍了一种具有分组桩基的桥塔的11100级动态测试模型的实验研究。该模型是根据弹性 - 重力相似度定律设计的,并使用地震,波浪和电流关节仿真系统进行测试。研究了空气和水条件中桥塔的结构响应,并没有入射正弦波和电流。测试结果可用于工程实践和进一步研究。 (c)2017年由elestvier有限公司出版

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