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Numerical Simulation of Wind-Driven Rain on a Long-Span Bridge

机译:长跨度桥上风力雨的数值模拟

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摘要

Wind-driven rain (WDR) and its interactions with structures is an important research subject in wind engineering. As bridge spans are becoming longer and longer, the effects of WDR on long-span bridges should be well understood. Therefore, this paper presents a comprehensive numerical simulation study of WDR on a full-scale long-span bridge under extreme conditions. A validation study shows that the predictions of WDR on a bridge section model agree with experimental results, validating the applicability of the WDR simulation approach based on the Eulerian multiphase model. Furthermore, a detailed numerical simulation of WDR on a long-span bridge, North Bridge of Xiazhang Cross-sea Bridge is conducted. The simulation results indicate that although the loads induced by raindrops on the bridge surfaces are very small as compared to the wind loads, extreme rain intensity may occur on some windward surfaces of the bridge. The adopted numerical methods and rain loading models are validated to be an effective tool for WDR simulation for bridges and the results presented in this paper provide useful information for the water-erosion proof design of future long-span bridges.
机译:风力驱动的雨(WDR)及其与结构的相互作用是风力工程中的重要研究主题。随着桥梁跨越变得越来越长,WDR对长跨度桥梁的影响应该得到很好的理解。因此,本文介绍了极端条件下全规模的长跨度桥梁WDR综合数值模拟研究。验证研究表明,WDR对桥梁部分模型的预测与实验结果一致,验证了基于欧拉多相模型的WDR仿真方法的适用性。此外,在夏阳交叉海桥北桥北桥的长跨度桥上的枸杞大桥梁的详细数值模拟。仿真结果表明,尽管桥面上的雨滴引起的负载与风荷载相比非常小,但是在桥的一些迎风表面上可能发生极端雨强度。采用的数控方法和雨量加载模型被验证为WDR仿真的有效工具,本文提出的结果为未来的长跨度桥梁的水侵蚀设计提供了有用的信息。

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