Discrete Element Simulation and Analysis of Ice-Inclined Structure Interaction

Inclined structure is an important marine structure in the iced area. The change of the inclined angle will change the main failure mode of sea ice and affect the peak ice force acted on the structure. In order to simulate the random breaking characteristics of level ice, an irregular distributed di...

Full description

Bibliographic Details
Main Author: WANG Yanlin, GUO Qi, SUN Shanshan, WEI Sihao, XU Ning
Format: Article
Language:zho
Published: Editorial Office of Journal of Shanghai Jiao Tong University 2022-09-01
Series:Shanghai Jiaotong Daxue xuebao
Subjects:
Online Access:http://xuebao.sjtu.edu.cn/article/2022/1006-2467/1006-2467-56-9-1168.shtml
_version_ 1811226802129993728
author WANG Yanlin, GUO Qi, SUN Shanshan, WEI Sihao, XU Ning
author_facet WANG Yanlin, GUO Qi, SUN Shanshan, WEI Sihao, XU Ning
author_sort WANG Yanlin, GUO Qi, SUN Shanshan, WEI Sihao, XU Ning
collection DOAJ
description Inclined structure is an important marine structure in the iced area. The change of the inclined angle will change the main failure mode of sea ice and affect the peak ice force acted on the structure. In order to simulate the random breaking characteristics of level ice, an irregular distributed dilated disk element model with bond-break function is constructed, and the dynamic process of interaction between the level ice and the inclined structure is simulated based on this model, which is verified by comparing the peak ice forces obtained by numerical simulation with the peak ice forces measured in the field. The influence law of the inclined angle on the ice force and the ice failure mode is analyzed. It shows that the variation of ice load with the changes of inclined angles simulated by the numerical method is basically consistent with the variation calculated by the two-dimensional theoretical model. With the increase of the incline angle, the proportion of bending failure decreases and the peak ice force and its occurrence probability increase. The inclined angle is an important factor in the change of sea ice failure modes and the peak ice force. This paper can be used as a reference for discrete element numerical simulation of sea ice and ice-resist design of inclined marine structures.
first_indexed 2024-04-12T09:31:20Z
format Article
id doaj.art-5f4e04e832874ecc8eaf4138661ee465
institution Directory Open Access Journal
issn 1006-2467
language zho
last_indexed 2024-04-12T09:31:20Z
publishDate 2022-09-01
publisher Editorial Office of Journal of Shanghai Jiao Tong University
record_format Article
series Shanghai Jiaotong Daxue xuebao
spelling doaj.art-5f4e04e832874ecc8eaf4138661ee4652022-12-22T03:38:21ZzhoEditorial Office of Journal of Shanghai Jiao Tong UniversityShanghai Jiaotong Daxue xuebao1006-24672022-09-015691168117510.16183/j.cnki.jsjtu.2021.182Discrete Element Simulation and Analysis of Ice-Inclined Structure InteractionWANG Yanlin, GUO Qi, SUN Shanshan, WEI Sihao, XU Ning01. School of Ocean Science and Technology, Dalian University of Technology, Panjin 124221, Liaoning, China;2. School of Physics, Dalian University of Technology, Panjin 124221, Liaoning, China;3. National Marine Environment Monitoring Center, Dalian 116023, Liaoning, ChinaInclined structure is an important marine structure in the iced area. The change of the inclined angle will change the main failure mode of sea ice and affect the peak ice force acted on the structure. In order to simulate the random breaking characteristics of level ice, an irregular distributed dilated disk element model with bond-break function is constructed, and the dynamic process of interaction between the level ice and the inclined structure is simulated based on this model, which is verified by comparing the peak ice forces obtained by numerical simulation with the peak ice forces measured in the field. The influence law of the inclined angle on the ice force and the ice failure mode is analyzed. It shows that the variation of ice load with the changes of inclined angles simulated by the numerical method is basically consistent with the variation calculated by the two-dimensional theoretical model. With the increase of the incline angle, the proportion of bending failure decreases and the peak ice force and its occurrence probability increase. The inclined angle is an important factor in the change of sea ice failure modes and the peak ice force. This paper can be used as a reference for discrete element numerical simulation of sea ice and ice-resist design of inclined marine structures.http://xuebao.sjtu.edu.cn/article/2022/1006-2467/1006-2467-56-9-1168.shtmldiscrete element method (dem)bond-break modelinclined structureice forcefailure mode
spellingShingle WANG Yanlin, GUO Qi, SUN Shanshan, WEI Sihao, XU Ning
Discrete Element Simulation and Analysis of Ice-Inclined Structure Interaction
Shanghai Jiaotong Daxue xuebao
discrete element method (dem)
bond-break model
inclined structure
ice force
failure mode
title Discrete Element Simulation and Analysis of Ice-Inclined Structure Interaction
title_full Discrete Element Simulation and Analysis of Ice-Inclined Structure Interaction
title_fullStr Discrete Element Simulation and Analysis of Ice-Inclined Structure Interaction
title_full_unstemmed Discrete Element Simulation and Analysis of Ice-Inclined Structure Interaction
title_short Discrete Element Simulation and Analysis of Ice-Inclined Structure Interaction
title_sort discrete element simulation and analysis of ice inclined structure interaction
topic discrete element method (dem)
bond-break model
inclined structure
ice force
failure mode
url http://xuebao.sjtu.edu.cn/article/2022/1006-2467/1006-2467-56-9-1168.shtml
work_keys_str_mv AT wangyanlinguoqisunshanshanweisihaoxuning discreteelementsimulationandanalysisoficeinclinedstructureinteraction