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Research into the Circular Wave Pool - a new method of generating controlled breaking waves

机译:循环波浪池研究 - 一种产生控制破波的新方法

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Surfing as a sport is increasing in popularity worldwide. However, as it depends on being able to access wave conditions which are not always available, surfers have been trying to make indoor pools which recreate the surfing experience in a controlled manner. One of the more promising developments in this area is a circular wave pool, patented by Greg Webber in 2005. The original idea was to produce crystal clear perfect surfable waves in a large circular pool, breaking on an inner island. Although never designed to replace surfing, this phenomena would complement the surfing industry perfectly, opening up new markets and cementing old ones. Greg Webber and Steven Schmied took the idea to TU Delft and then to the Australian Maritime College for further research. 6 years later the research team has been analysing shapes, testing and predicting their wave-making performance in straight lines and finally producing perfect scaled waves in a circular test facility. This paper reports on this research and on how it has been used to further the design of the wave pool. Appropriate surfing speeds have been established from observations of real surfers. Scale model tests were used to determine the optimum Froude depth and length numbers. Finally a set of working beach locations and slopes have been estimated from the experimental study. In addition to being able to be used to create perfect waves for surfing, the circular wave pool can also be used for a range of research activities, for example to generate controlled waves to investigate the loads generated by breaking waves on coastal structures and to investigate waves generated by manoeuvring vessels.
机译:作为运动的冲浪正在全世界受欢迎程度越来越大。然而,由于它取决于能够进入并不总是可用的波条件,因此冲浪者一直试图使室内游泳池以受控的方式重新创建冲浪体验。该领域更有前途的发展之一是2005年由Greg Webber专利的圆形波浪池。原始想法是在一个大的圆形池中生产晶体清晰的完美水脉波,在内岛上打破。虽然从未设计用于更换冲浪,但这种现象将完美地补充冲浪行业,开辟新的市场和巩固旧市场。 Greg Webber和Steven Schmied将这个想法带到了Tu Delft,然后到了澳大利亚海事学院进行了进一步研究。 6年后,研究团队一直在分析形状,测试和预测其直线的波浪性能,最后在圆形测试设施中产生完美的缩放波。本文报告了这项研究,并如何用于进一步设计波浪池。已经从真实冲浪者的观察结果建立了适当的冲浪速度。规模模型测试用于确定最佳的FRoude深度和长度数。最后,从实验研究中估计了一套工作海滩地点和斜坡。除了能够用于创造用于冲浪的完美波之外,圆波池还可用于一系列研究活动,例如用于产生受控波以研究通过在沿海结构上破坏波产生的负载并进行调查由机动船产生的波浪。

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