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The Application of Froude Scaling on Scale Model Tests of Oscillating Wave Surge Converters

机译:Froude标度在振荡波浪涌变换器比例模型试验中的应用。

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摘要

Experimental tank testing of scale models is a standard tool in marine engineering. The underlying problem is well understood and refinements to standard applications, like resistance testing of typical ship hulls, have led to widely accepted methodologies. Similarly Reynolds-averaged Navier-Stokes computational fluid dynamics solvers have been used to assess the effect of scaling from model to full scale forships successfully. Problems still arise when new structures, with very different shapes or modes of motion, are tested. The OWSC is such a new structure, and this paper investigates whether Froude scaling is adequate to extrapolate model scale tank testing to full scale devices.Since only limited full scale data is yet available, the investigation is mainly based on numerical simulations.It is shown that for current designs Froude scaling of typical tank scales is probably appropriate. The application of Reynolds-averaged Navier-Stokes computational fluid dynamics methods to scaling issues in the wave energy industry is demonstrated and some challenges, mainly the demands of industry standard wall functions on appropriate mesh resolution highlighted. Although the observed changes in flow patterns seem reasonable and can be explained by changes in viscosity, some uncertainty remains on the influence of mesh resolution.
机译:比例模型的实验性坦克测试是海洋工程中的标准工具。根本的问题已得到很好的理解,并且对标准应用程序的改进(例如对典型船体的阻力测试)导致了广泛接受的方法。类似地,雷诺平均Navier-Stokes计算流体动力学求解器已成功用于评估从模型到满刻度船舰的按比例缩放的效果。当测试具有不同形状或运动模式的新结构时,仍然会出现问题。 OWSC就是这样一个新结构,本文研究了Froude缩放是否足以将模型规模的油罐测试外推到满量程设备,由于只有有限的满量程数据可用,因此该调查主要基于数值模拟。对于当前设计而言,典型的坦克秤的弗洛德定标可能是合适的。演示了雷诺平均Navier-Stokes计算流体动力学方法在波浪能源行业中按比例缩放问题的应用,并指出了一些挑战,主要是行业标准墙功能对适当网格分辨率的要求。尽管观察到的流动模式变化似乎是合理的,并且可以用粘度变化来解释,但是仍然存在一些不确定性,这会影响网格分辨率。

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