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1Modelling large deformation and soil–water–structure interaction with material point method:Briefing on MPM2017 conference显示文摘The 1st International Conference on the Material Point Method for 'Modelling Large Deformation and Soil–Water–Structure Interaction'(MPM2017)was held in Delft,The Netherlands on 10-13 January 2017.This is the first conference organised by the Anura3D MPM Research Community,following a series of international workshops and symposia previously held in The Netherlands,UK,Spain and Italy,as part of the European Commission FP7 Marie-Curie project MPM-DREDGE.We are delighted to present seven contributions in this Special Column of the Journal of Hydrodynamics,and take this opportunity to announce that the 2nd conference,MPM2019,will be held in Cambridge,UK in January 2019.Alexander Rohe Dongfang Liang 2017Journal of Hydrodynamics2017,29,3:1
2Wave effects on the anti-liquefaction of the seabed around composite bucket foundation of offshore wind turbines显示文摘By using the open-source software OpenFOAM and the grid generation tool the integrated computer engineering and manufacturing code for computational fluid dynamics(ICEM CFD),a computational fluid dynamics-computational structural dynamics(CFD-CSD)coupling model is established.The dynamic response and the liquefaction of the seabed around the composite bucket foundation of the offshore wind turbines in the Xiangshui area of Jiangsu Province are investigated.The pore water pressure,the effective stress,the liquefaction depth and the anti-liquefaction effect of the overlying stones are analyzed.It is shown that the seabed around the composite bucket foundation will be liquefied under 50 year return waves,the liquefaction width is approximately 1/3 of the wavelength,and the maximum liquefaction depth is approximately 1/4 of the wave height.In addition,the overlying stones provide an effective anti-liquefaction method.Thicker,less porous overlying stones have a better anti-liquefaction effect.Li-hua Wang Jin-feng Zhang Run-bo Cai Jing-yuan Li 2021Journal of Hydrodynamics2021,33,6:0
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