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DEVELOPMENT AND VERIFICATION OF MODELING PRACTICE FOR CFD CALCULATIONS TO OBTAIN CURRENT LOADS ON FPSO

机译:CFD计算建模实践的开发和验证,以获得FPSO的电流负荷

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Current loads are important input parameters for mooring studies. To accurately predict the motions of moored vessels these quantities should be determined with confidence in the values. Traditionally, these quantities have been determined using model tests in water basins or in wind tunnels. With recent advancements in CFD modeling, the offshore industry has started using CFD as an alternative tool to compute current loads on FPSO's. In order to help adopt CFD as a widely accepted tool, there is a need to develop confidence in CFD predictions. Therefore, a practical CFD Modeling Practice is developed within the Reproducible Offshore CFD JIP. The Modeling Practice describes the geometry modeling, computational mesh, model set-up and post-processing for these types of CFD calculations. This Modeling Practice is verified and validated by five independent verifiers against model test data, such that reproducible and accurate results can be obtained by following the Modeling Practice. This paper provides an overview of the developed Modeling Practice and the calculated CFD results from the verifiers. The CFD Modeling Practice is benchmarked against available model test results for a barge-type and a tanker-shaped FPSO. By following this Modeling Practice, the CFD predictions for CY and CMZ are within 10% from all verifiers and within 10% from the model test results. Larger differences may be obtained for CX, depending on local grid resolution and turbulence model used, but also due to larger experimental uncertainty for this quantity.
机译:电流负载是系泊研究的重要输入参数。为了准确预测停泊血管的运动,这些数量应以置信度确定。传统上,这些数量已经在水盆中或风隧道中使用模型试验确定。随着近期CFD建模的进步,海上行业已开始使用CFD作为替代工具来计算FPSO的当前负载。为了帮助采用CFD作为广泛接受的工具,需要对CFD预测产生信心。因此,在可重复的海上CFD JIP内开发了实用的CFD建模实践。建模实践描述了这些类型的CFD计算的几何建模,计算网格,模型设置和后处理。通过5个独立的验证者对模型测试数据进行验证和验证这种建模实践,使得通过遵循建模实践可以获得可重复和准确的结果。本文概述了开发的建模实践和来自验证者的计算的CFD结果。 CFD建模实践是针对驳船型和油轮形FPSO的可用模型测试结果基准测试。通过遵循该建模实践,CY和CMZ的CFD预测距离所有Verifiers的10%,从模型测试结果达到10%。 CX可以获得更大的差异,这取决于所用的局部网格分辨率和湍流模型,而且由于该数量的更大的实验性不确定性。

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