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首页> 外文期刊>Ocean Engineering >Subsidence prediction of a rubble mound breakwater at Yantai port: A application of FSSI-CAS 2D
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Subsidence prediction of a rubble mound breakwater at Yantai port: A application of FSSI-CAS 2D

机译:Yantai港瓦砾土墩防堤的沉降预测:FSSI-CAS 2D的应用

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摘要

This study is an application of the integrated numerical model FSSI-CAS 2D, to predict the subsidence of a huge rubble mound breakwater in the west part zone at Yantai port. The modified Cambridge clay soil model and poro-elastic model are adopted to describe the quasi-static mechanical behavior of the seabed foundation, which is consists of muddy-clay, clay and silt soil layers. The model parameters of soil used in computation are estimated based on a great number of laboratory tests (over one thousand). A novel point is that the buoyancy applied on the rubble mounds under SWL (Static Water Line), as well as its nonlinear variation dependent on the deformation of seabed foundation are considered in computation. Through analytical and experimental verification, as well as the comparison with observation data monitored in-situ, it is indicated that FSSI-CAS 2D is reliable to numerically predict the subsidence of offshore structures, and has the ability to be applied in practical engineering.
机译:本研究是集成数值模型FSSI-CAS 2D的应用,以预测烟台港口西部区巨大的瓦砾土墩防波堤的沉降。采用改良的剑桥粘土土壤模型和浮标弹性模型来描述海底基础的准静态力学行为,包括泥泞 - 粘土,粘土和淤泥土层组成。基于大量的实验室测试(超过一千),估计计算中使用的土壤的模型参数。一种新的点是在SWL(静态水线)下施加在瓦砾土墩上的浮力以及取决于海底基础变形的非线性变化。通过分析和实验验证,以及与原位监测的观察数据的比较,结果表明FSSI-CAS 2D可靠地以数值预测近海结构的沉降,并且具有应用在实际工程中的能力。

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