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Computational Modeling of Submarine Oil Spill with Current and Wave by FLUENT

机译:基于FLUENT的海浪溢流与波浪的计算建模。

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摘要

As the oil spill models are usually based on the sea surface and few researches are for submarine oil spill nowadays, the simulation for submarine pipeline oil spill is discussed by FLUENT to forecast the trajectory of oil. The coupling of pressure and velocity under unsteady-state condition is solved by pressure implicit with splitting of operator's algorithm and the boundary condition of nonlinear free surface is solved by volume of fluid. The simulation of oil particles motion is carried out. Furthermore, the quantity and trajectory of spilled oil under different operating pressure, current velocities and wave lengths are compared and analyzed. The results show that wave and current have important effects on the location and oil film area on sea surface. The submarine diffusion scope of spilled oil is smaller with larger operating pressure or lower current velocity. With wave length increasing, the water depth influenced by wave, the scope of oil dispersion underwater and the oil film area on surface increase.
机译:由于溢油模型通常基于海面,而如今对海底溢油的研究很少,因此FLUENT讨论了海底管道溢油的模拟以预测油的轨迹。在非稳态条件下,压力和速度的耦合通过算子分解算法隐含的压力来解决,而在自由状态下非线性自由面的边界条件则通过流体的体积来解决。进行了油粒运动的模拟。此外,还对不同工作压力,流速和波长下的溢油量和轨迹进行了比较和分析。结果表明,波浪和海流对海面的位置和油膜面积具有重要影响。工作压力较大或流速较低时,溢油在海底的扩散范围较小。随着波长的增加,水深受到波浪的影响,水下油分散的范围和表面油膜面积的增加。

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  • 来源
  • 作者单位

    Science and Technology on Underwater Vehicle Laboratory, Harbin Engineering University, Harbin 150001, China,College of Environmental Science and Engineering;

    Science and Technology on Underwater Vehicle Laboratory, Harbin Engineering University, Harbin 150001, China;

    College of Environmental Science and Engineering;

    College of Transportation Equipment and Ocean Engineering, Dalian Maritime University, Dalian 116026, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    FLUENT; oil spill; simulation; submarine; wave;

    机译:流利;漏油事件;模拟;潜艇;波;

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