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不同水深和锚链布置形式下的浮式储油罐动力响应数值模拟
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作者 许莲 万德成 《江苏科技大学学报(自然科学版)》 CAS 北大核心 2017年第5期629-634,共6页
随着海洋工程的飞速发展,针对溢油回收的浮式储油罐的应用和分析越来越受到重视.浮式储油罐在不同水深下的锚链布置形式对其运动和动力响应的影响是设计者们尤为关心的问题.文中首先对一浅水(水深=28 m)工况下的3种锚链布置形式的浮式... 随着海洋工程的飞速发展,针对溢油回收的浮式储油罐的应用和分析越来越受到重视.浮式储油罐在不同水深下的锚链布置形式对其运动和动力响应的影响是设计者们尤为关心的问题.文中首先对一浅水(水深=28 m)工况下的3种锚链布置形式的浮式储油罐动力响应进行了数值模拟,然后对更大水深(水深=60,100 m)的不同锚链布置形式分别进行了响应的数值模拟,对计算结果做了分析,并对未来的浮式储油罐系泊形式设计提出了建议.文中采用自主开发的、基于RANS方程的粘性流体求解器naoe-FOAM-SJTU并利用集中质量法求解锚链力. 展开更多
关键词 浮式储油罐 动力响应 系泊系统 naoe-FOAM-SJTU求解器
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中国公司建造浮式储油罐
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作者 肖舒月 《天然气勘探与开发》 2020年第2期58-58,共1页
中国"复合材料造船公司"(Haiyan Submarinenergy)2020年4月30日称,5月将交付首批用于存储原油的海上油罐。根据该公司的书面声明,每个5 000 t的浮式储油装置可以容纳原油3.5×10^4 bbl(注:1 bbl=0.158 988 m^3,下同)。据... 中国"复合材料造船公司"(Haiyan Submarinenergy)2020年4月30日称,5月将交付首批用于存储原油的海上油罐。根据该公司的书面声明,每个5 000 t的浮式储油装置可以容纳原油3.5×10^4 bbl(注:1 bbl=0.158 988 m^3,下同)。据报道,构成储罐的非金属材料在原油和海水环境中可持续使用50年以上。该公司还认为,浮式储油装置可以在几周内建成,而特大型油轮的建造时间为3年。 展开更多
关键词 非金属材料 浮式储油罐 造船公司 书面声明 海水环境 可持续使用 复合材料
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Prediction of the Mooring Force of a 2-D Floating Oil Storage Tank 被引量:4
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作者 CHU Xinjie DONG Sheng ZHAO Xizeng 《Journal of Ocean University of China》 SCIE CAS 2014年第6期901-910,共10页
A Constrained Interpolation Profile (CIP)-based model is developed to predict the mooring force of a two-dimensional floating oil storage tank under wave conditions, which is validated against to a newly performed e... A Constrained Interpolation Profile (CIP)-based model is developed to predict the mooring force of a two-dimensional floating oil storage tank under wave conditions, which is validated against to a newly performed experiment. In the experiment, a box-shaped floating oil storage apparatus is used. Computations are performed by an improved CIP-based Cartesian grid model, in which the THINC/SW scheme (THINC: tangent of hyperbola for interface capturing; SW: Slope Weighting), is used for interface capturing. A multiphase flow solver is adopted to treat the water-air-body interactions. The Immersed Boundary Method (IBM) is implemented to treat the body surface. Main attention is paid to the sum force of mooring line and velocity field around the body. It is found that the sum force of the mooring line increases with increasing wave amplitude. The body suffers from water wave impact and large body motions occur near the free surface. The vortex occurs near the sharp edge, i.e., the sharp bottom comers of the float- ing oil storage tank and the vortex shedding can be captured by the present numerical model. The present model could be further improved by including turbulence model which is currently under development. Comparison between the computational mooring forces and the measured mooring forces is presented with a reasonable agreement. The developed numerical model can predict the mooring line forces very well. 展开更多
关键词 floating oil storage mooring line force CIP method numerical method Immersed Boundary Method
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