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APPLICATION OF CFD TO PREDICT THE HYDRODYNAMIC PERFORMANCE OF OFFSHORE FAIRING DESIGNS

机译:CFD在海上整流器设计中的应用中的应用

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In this work, the hydrodynamic performance of various fairing designs have been investigated using Computational Fluid Dynamics (CFD). This paper is divided into two primary sections. The first section involves a thorough sensitivity study to investigate the parameters that are vital in establishing an accurate and robust CFD modeling approach for fairings. The parameters that were investigated during this phase of the work include the mesh density used in the simulations, the blockage ratio (i.e. physical size of the domain that is modeled), the Reynolds Number, and the geometric detail included in the simulations. Upon completion of the sensitivity studies, CFD "best practices" were established. These practices were then applied to a baseline fairing design, and the results were compared against available test data. The CFD approach was shown to predict drag coefficients that agreed with test data within 10% for all cases that were investigated. The second section of this paper focuses on application of the CFD techniques to evaluate 3 candidate fairing designs. The designs differed in the length and taper angle of the fins. The effect of shortening the fins on straight fin cases had a minor impact on the resulting drag. However, a significant reduction in the drag on the fairings was observed when the fins were tapered inward.
机译:在这项工作中,使用计算流体动力学(CFD)研究了各种整流设计的流体动力学性能。本文分为两个主要部分。第一部分涉及彻底的敏感性研究,以研究为建立准确和坚固的CFD建模方法的公平至关重要的参数。在该工作的该阶段期间研究的参数包括模拟中使用的网状密度,堵塞比(即建模的域的物理大小),雷诺数和模拟中的几何细节。完成敏感性研究后,建立了CFD“最佳实践”。然后将这些实践应用于基线整流设计,并将结果与​​可用的测试数据进行比较。显示CFD方法预测,所有调查的所有病例如何在10%内商定的拖曳系数。本文的第二部分侧重于适用CFD技术来评估3候选人整流设计。设计在翅片的长度和锥角中不同。缩短鳍片对直鳍病例的影响对所产生的阻力产生轻微影响。然而,当鳍片向内逐渐变细时,观察到在公平上的拖动的显着减少。

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