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HELIDECK TURBULENCE STUDY ON OFFSHORE PLATFORMS BY ANISOTROPIC TURBULENCE MODEL

机译:各向异性湍流模型研究海洋平台的直升机湍流

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The objective of this paper is to investigate the predictive capabilities of an anisotropic turbulence model for Mehdeck turbulence studies on offshore platforms and also to discuss the cha lienges in fulfil ling the regulations and demands from the a uthorities fo r ensuring a safe helideck design. A (computational Fluid Dynamics (GFD) study is performed on a Front End Engineering Design (FEED) phase offshore platform geometry using unsteady Reynolds Stress model (RSM) and the mean flow conditions for safe helideck operations a re evaluated. The results are compared with an isotropic turbulence model using the realizable~kEpsifon (RKE) model to establish if there is any gain or added merits in using computationally intensive RSM versus RKE model, f he result comparison shows that for the skewed wind angles, flow separation from the platform outer edges will develop a swirl that starts to rise towards the helideck areas. This is well captured in the RSM model when compared to RKE model. In addition to numerical prediction, operational experience from pilots and their reactions to turbulence has also been documented in this paper. An open source software tool OpenFOAM is used in this study for the numerical analysis. As a part of this study, OpenFOAM has also been tested for canonical flows and the results are compared with expert mental studies. Guidellnes for evaluating helideck flow conditions and potential design modifications for safe helideck operations a re also discussed in this paper.
机译:本文的目的是研究各向异性湍流模型对海上平台Mehdeck湍流研究的预测能力,并讨论满足确保安全直升机停机坪设计要求的法规和要求所面临的挑战。使用非稳态雷诺应力模型(RSM)对前端工程设计(FEED)相海上平台几何结构进行了(计算流体动力学(GFD)研究,并重新评估了安全直升机停机操作的平均流量条件,并将结果与使用realizable〜kEpsifon(RKE)模型建立的各向同性湍流模型,以确定使用计算密集型RSM vs RKE模型是否有任何收益或增加的优点,其结果比较表明,对于偏风角,与平台外部的气流分离边缘将形成旋涡,并开始向直升机停机坪区域上升;与RKE模型相比,RSM模型可以很好地捕捉到这一点;除了数值预测,飞行员的操作经验及其对湍流的反应也得到了记录。本研究中使用开源软件工具OpenFOAM进行数值分析,作为该研究的一部分,OpenFOAM也已通过了耐油性测试。流量和结果与专家心理研究进行比较。本文还讨论了用于评估直升机停机坪流动条件的指南以及安全直升机停机坪操作的潜在设计修改。

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