[快闪报告]海底浊流影响下海底管道水动力响应数值模拟分析

海底浊流影响下海底管道水动力响应数值模拟分析
编号:3811 稿件编号:2657 访问权限:私有 更新:2023-04-26 17:12:29 浏览:213次 快闪报告

报告开始:2023年05月07日 11:57 (Asia/Shanghai)

报告时间:3min

所在会议:[3A] 3A、地质灾害与工程地质 » [3A-2] 3A-2 地质灾害与工程地质

演示文件 附属文件

提示:该报告下的文件权限为私有,您尚未登录,暂时无法查看。

摘要
Turbidity current, one of the most frequent marine geological disasters, has a strong influence on ocean structures due to its high speed, frequent occurrence, wide occurrence, and long-distance transport. In this study, the effect of turbidity current on hydrodynamic characteristics of submarine pipeline is studied by considering the pipeline diameter, pipeline suspension height, pipeline location, and the gap between two pipelines. Based on computational fluid mechanics, a fluid model and a sediment transport model are established. The area and volume fractions of the sediment particles are calculated depending on the fractional volume method to fully couple the submarine pipeline and turbidity current in the fluid domain. The results show that when the turbidity current impinges on the pipeline, the vortex shedding occurs downstream of the pipeline and the dynamic response of rising and fluctuating occurs twice, in which the turbidity current head has more influence than the main body. With the increase of pipeline diameter, the hydrodynamic response of pipe increases. With the increase of the suspension height, the turbidity current around the pipeline changes from asymmetric to symmetric, and the hydrodynamic fluctuation of the pipeline increases. As the gap between pipeline and turbidity current increases, vortex shedding and hydrodynamic response caused by the main body of turbidity current increase. In the tandem pipelines case, the flow and hydrodynamic forces of the downstream pipeline are more complex but the hydrodynamic forces are smaller than in the single pipeline case. It is anticipated that the findings in this paper will enhance our understanding on the damage mechanism of the submarine pipeline by turbidity current and may also be useful in future design practices of pipelines.
关键字
Turbidity current,Submarine pipeline,Flow characteristics,Hydrodynamic response,Numerical simulation
报告人
孙均楷
中国海洋大学

稿件作者
孙均楷 中国海洋大学
刘晓磊 中国海洋大学
谢晓天 中国海洋大学
陆杨 中国海洋大学
发表评论
验证码 看不清楚,更换一张
全部评论

联系我们

会务总协调、疫情防控:

沈焕锋(13163235536;shenhf@whu.edu.cn)

管小彬(18007973663;guanxb@whu.edu.cn)

魏秀琴(15871750333;weixiuqin@whu.edu.cn)

会场安排:

沈焕锋(13163235536;shenhf@whu.edu.cn)

李长冬(15327198910;lichangdong2008@126.com)

张 亮(15827200707;lzhang@whigg.ac.cn)

徐 鹏(13554674258;xupengwhu@whu.edu.cn)

学术安排:

王伦澈(13349889828;wang@cug.edu.cn)

庄艳华(13349889826;zhuang@apm.ac.cn)

李星华(15527964369;lixinghua5540@whu.edu.cn)

会议注册:

管小彬(18007973663;guanxb@whu.edu.cn)

赵 林(18071070948;linzhao@whu.edu.cn)

会议财务:

张传喜(13627137374;zhangchuanxi@whu.edu.cn)

石玉婷(13476286537;yutingshi@vip.qq.com)

商业赞助:

阮志敏(15871826028;ruanzm@whu.edu.cn)

黄文丽(13693626212;wenli.huang@whu.edu.cn)

会议服务,酒店预定,网站、注册系统服务:

曹雪峰(18971567453;carol@chytey.com)

金钰壹(18271358859;jinyuyi@whu.edu.cn)

会务总协调、疫情防控:
沈焕锋(13163235536;shenhf@whu.edu.cn)
管小彬(18007973663;guanxb@whu.edu.cn)
魏秀琴(15871750333;weixiuqin@whu.edu.cn)
会场安排:
沈焕锋(13163235536;shenhf@whu.edu.cn)
李长冬(15327198910;lichangdong2008@126.com)
张 亮(15827200707;lzhang@whigg.ac.cn)
徐 鹏(13554674258;xupengwhu@whu.edu.cn)
学术安排:
王伦澈(13349889828;wang@cug.edu.cn)
庄艳华(13349889826;zhuang@apm.ac.cn)
李星华(15527964369;lixinghua5540@whu.edu.cn)
会议注册:
管小彬(18007973663;guanxb@whu.edu.cn)
赵 林(18071070948;linzhao@whu.edu.cn)
会议财务:
张传喜(13627137374;zhangchuanxi@whu.edu.cn)
石玉婷(13476286537;yutingshi@vip.qq.com)
商业赞助:
阮志敏(15871826028;ruanzm@whu.edu.cn)
黄文丽(13693626212;wenli.huang@whu.edu.cn)
会议服务,酒店预定,网站、注册系统服务:
曹雪峰(18971567453;carol@chytey.com)
金钰壹(18271358859;jinyuyi@whu.edu.cn)
注册缴费 提交稿件