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Experimental and Numerical Investigation of the Effect of Different Shapes of Collars on the Reduction of Scour around a Single Bridge Pier

机译:不同形状的项圈对减少单桥墩冲刷影响的试验和数值研究

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摘要

The scour phenomenon around bridge piers causes great quantities of damages annually all over the world. Collars are considered as one of the substantial methods for reducing the depth and volume of scour around bridge piers. In this study, the experimental and numerical methods are used to investigate two different shapes of collars, i.e, rectangular and circular, in terms of reducing scour around a single bridge pier. The experiments were conducted in hydraulic laboratory at university of Malaya. The scour around the bridge pier and collars was simulated numerically using a three-dimensional, CFD model namely SSIIM 2.0, to verify the application of the model. The results indicated that although, both types of collars provides a considerable decrease in the depth of the scour, the rectangular collar, decreases scour depth around the pier by 79 percent, and has better performance compared to the circular collar. Furthermore, it was observed that using collars under the stream’s bed, resulted in the most reduction in the scour depth around the pier. The results also show the SSIIM 2.0 model could simulate the scour phenomenon around a single bridge pier and collars with sufficient accuracy. Using the experimental and numerical results, two new equations were developed to predict the scour depth around a bridge pier exposed to circular and rectangular collars.
机译:桥墩周围的冲刷现象每年在世界范围内造成大量损失。衣领被认为是减少桥墩周围冲刷深度和数量的重要方法之一。在这项研究中,实验和数值方法被用于研究两种不同形状的领圈,即矩形和圆形,以减少单个桥墩周围的冲刷。实验在马来亚大学的水力实验室进行。使用三维CFD模型SSIIM 2.0对桥墩和领圈周围的冲刷进行了数值模拟,以验证该模型的应用。结果表明,尽管两种类型的套环都可显着降低冲刷深度,但矩形套环可将墩周围的冲刷深度降低79%,并且与圆形套环相比性能更好。此外,据观察,在河床底下使用项圈可最大程度地减少码头周围的冲刷深度。结果还表明,SSIIM 2.0模型可以足够准确地模拟单个桥墩和围圈周围的冲刷现象。利用实验和数值结果,开发了两个新方程来预测暴露于圆形和矩形套环的桥墩周围的冲刷深度。

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