水道高架桥桥墩防撞的高压水射流干扰研究:广州立新沙大桥案例研究

Jincai Chen, Xiquan Wei, Jingjing Huang, Haibo Wang, Meiling Dai
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摘要

本文以频繁发生的船桥碰撞事故为背景,以中国立交桥碰撞事故为研究对象,利用 ANSYS-FLUENT 软件模拟了船舶撞击桥墩的场景,深入研究了高压水射流干涉(HPWJI)防撞方法的实际应用可能性。通过模拟分析,验证了总流量为 45 立方米/秒的高压水射流在改变大吨位(2000 吨)船舶航行方向和避开障碍物方面的有效性。此外,还探讨了其对船舶钢板应力和航行状态的影响。研究发现,在合理布局和调整参数的情况下,高压水射流技术可以在确保船舶结构安全的前提下有效干预船舶航行轨迹,对船舶航行稳定性和乘客舒适度的影响极小。此外,高压水射流的喷射角度对船舶的偏转和减速也有很大影响。具体来说,当水射流沿船舶前进方向冲击船舶时,可有效增加船舶的减速和偏转时间,将船速从 2.55 m/s 降至 1.7 m/s,降幅约为 33%,大大提高了防撞效果。该研究为高压水射流防撞技术的实际应用提供了重要指导,对提高水路运输安全具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on High-Pressure Water Jet Interference for Collision Prevention of Waterway Viaduct Piers: Case Study of Guangzhou Lixinsha Bridge
In this paper, with the frequent occurrence of ship–bridge collision accidents as the context and the collision accident of the Lixinsha Bridge in China as the background, the scenario of a ship impacting a pier was simulated using ANSYS-FLUENT software, and the practical application possibility of the high-pressure water jet interference (HPWJI) anti-collision method was thoroughly investigated. Through the simulation analysis, the effectiveness of a high-pressure water jet with a total flow rate of 45 m3/s in altering the navigation direction of large-tonnage (2000 t) ships and avoiding obstacles was verified. Additionally, its impact on the stress of the ship steel plates and navigation status was also explored. It was found that, with reasonable layout and parameter adjustment, the high-pressure water jet technology could effectively intervene in the ship’s navigation trajectory while ensuring the structural safety of the ship, with minimal impact on the ship’s navigation stability and passenger comfort. Furthermore, the injection angle of the high-pressure water jet had a significant impact on the deflection and deceleration of the ship. Specifically, when the water jet impacted the ship along its forward direction, it could effectively increase the ship’s deceleration and deflection time, reducing the speed from 2.55 m/s to 1.7 m/s, a decrease of approximately 33%, significantly enhancing collision prevention effectiveness. This research provides important guidance for the practical application of high-pressure water jet collision prevention technology and is of great significance for improving the safety of waterway transportation.
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