首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >A COUPLED VOF-EULERIAN MULTIPHASE CFD MODEL TO SIMULATE BREAKING WAVE IMPACTS ON OFFSHORE STRUCTURES
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A COUPLED VOF-EULERIAN MULTIPHASE CFD MODEL TO SIMULATE BREAKING WAVE IMPACTS ON OFFSHORE STRUCTURES

机译:耦合的VOF-EULERIAN多相CFD模型,模拟海上波浪波对海上结构的影响

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Breaking wave-induced loads on offshore structures can be extremely severe. The air entrainment mechanism during the breaking process plays a not well-known role in the exerted forces. This paper present a CFD solver, developed in the Open-FOAM environment, capable of simulating the wave breaking-induced air entrainment. Firstly the model was validated against a bubble column flow. Then it was employed to compute the inline force exerted by a spilling breaking wave on a vertical cylinder in a 3D domain at a laboratory scale. Results showed that the entrained bubbles affected the magnitude of the force partially. Further analyses on the interaction of the bubble plume with the flow around the cylinder are needed.
机译:破坏波浪引起的海上结构载荷可能非常严重。断裂过程中的空气夹带机制在所施加的力中起着未知的作用。本文介绍了一种在开放式FOAM环境中开发的CFD求解器,它能够模拟波浪引起的空气夹带。首先,针对泡罩塔流对模型进行了验证。然后,在实验室规模下,使用它来计算由溢出的破波施加在3D域中的垂直圆柱体上的轴向力。结果表明,夹带的气泡部分地影响了力的大小。需要对气泡羽流与圆柱体周围的流动之间的相互作用进行进一步分析。

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