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首页> 外文期刊>Journal of Pipeline Systems Engineering and Practice >Free-Spanning Submarine Pipeline Response to Severe Ground Excitations: Water-Pipeline Interactions
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Free-Spanning Submarine Pipeline Response to Severe Ground Excitations: Water-Pipeline Interactions

机译:自由式海底管道对严重地面激励的响应:水-管道相互作用

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摘要

Submarine pipelines are usually laid unburied. Free spanning may be caused in the line by seabed unevenness, topology changes, scouring, or sand waves. In seismically active areas, the free spannings are prone to severe ground excitations. This article deals with the seismic performance of the submarine pipeline free spanning, and the water/pipeline interaction during the event is its focal point. For this, a numerical finite-element model has been used. Results from a conventional added mass approach have been examined against those from a more elaborate coupled acoustic-structural model. With the coupled system the surrounding seawater, pipe body, seabed, and free spanning have all been incorporated into the model. Both random earthquake and harmonic excitations have been considered. A time domain incremental dynamic analysis (IDA) method has been used to evaluate the pipeline performance. Effects from type, frequency, intensity, and direction of excitation and the free-span length on the pipeline response have been investigated. In most cases, the added mass approach has been found to provide more conservative predictions (in some cases up to 60%) for the free-spanning seismic response in comparison to those obtained from the acoustic method. For the earthquake excitations, the predictions obtained from each of the two methods have been more consistent as compared to the results obtained for harmonic excitations.
机译:海底管道通常未经铺设。海底不平整,拓扑结构变化,冲刷或沙波可能会在管道中造成自由跨度。在地震活跃地区,自由跨度容易受到强烈的地面激励。本文讨论了海底管道自由跨度的抗震性能,事件期间的水/管道相互作用是其重点。为此,使用了数值有限元模型。与来自更复杂的声学结构模型的结果相比,已经检验了传统的附加质量方法的结果。通过耦合系统,周围的海水,管体,海床和自由跨度都已纳入模型。已经考虑了随机地震和谐波激励。时域增量动态分析(IDA)方法已用于评估管道性能。研究了激励类型,频率,强度和方向以及自由跨度对管道响应的影响。在大多数情况下,与从声学方法获得的结果相比,发现增加质量方法可为自由跨度地震响应提供更保守的预测(在某些情况下,高达60%)。对于地震激励,与谐波激励的结果相比,从两种方法中获得的预测都更加一致。

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