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CFD-BASED SIMULATION OF THE FLOW AROUND A SHIP IN OBLIQUE MOTION AT LOW SPEED

机译:基于CFD的低速斜运动船舶绕流模拟

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Ships tend to maneuver in oblique motion at low speed in situations such as turning in a harbor, or during offloading, dynamic positioning and mooring processes. The maneuverability criteria proposed by IMO are valid for ships sailing with relatively high speeds and small drift angles, which are inadequate to predict ship maneuverability in low speed condition. Hydrodynamic performance of ships maneuvering at low speed is needed to know for safety issues. A CFD-based method is employed to predict the flow around an Esso Osaka bare hull model in oblique motion at low speed, where the drift angle varies from 0 degrees to 180 degrees. The URANS method with the SST k-omega model is used for simulating ship flows with drift angles 0 degrees similar to 30 degrees and 150 degrees similar to 180 degrees, and DES method for simulating ship flows with drift angles 40 -150. Verification and validation studies are conducted for drift angles of 0 degrees and 70 degrees. The vortex structures at typical drift angles of 0 degrees, 30 degrees, 50 degrees, 70 degrees, 90 degrees and 180 degrees are analyzed. The effects of drift angle and ship speed are demonstrated.
机译:在港口转弯或卸货,动态定位和系泊过程中,船舶倾向于以低速倾斜运动。 IMO提出的可操纵性标准适用于航行速度相对较高且漂移角较小的船舶,这不足以预测低速条件下的船舶可操纵性。对于安全问题,需要了解低速航行的船舶的水动力性能。使用基于CFD的方法来预测低速倾斜运动中Esso Osaka裸船模型周围的流量,其中漂移角从0度到180度变化。具有SSTk-ω模型的URANS方法用于模拟漂移角为0度(类似于30度)和150度(类似于180度)的船舶流,以及DES方法用于模拟漂移角为40 -150的船舶流。进行了0度和70度漂移角的验证和确认研究。分析了典型漂移角为0度,30度,50度,70度,90度和180度时的涡旋结构。演示了漂移角和船速的影响。

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