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首页> 外文期刊>Journal of bridge engineering >Steel Fender Limitations and Improvements for Bridge Protection in Ship Collisions
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Steel Fender Limitations and Improvements for Bridge Protection in Ship Collisions

机译:钢制护舷的局限性和船舶碰撞中桥梁保护的改进

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摘要

Steel fenders are widely used in China to protect newly constructed bridges from collapse when struck by ships. In fact, steel fenders are more commonly used in China than other types of bridge protection systems. However, few studies have been conducted to verify the performance of these fenders in a collision. To begin this study, a conventional steel fender was investigated using high-resolution finite-element (FE) analyses of ship-bridge-fender collisions. The limitations of the conventional fender were clearly demonstrated. In particular, when a bridge equipped with the steel fender was subjected to a high-energy collision with a vessel, the impact forces and dynamic responses were greater than on those with no fender. Thus, the authors propose a novel fender design composed of steel and concrete to overcome the limitations of the conventional steel fender. In the proposed fender, the panel that comes in direct contact with the errant ship is made of reinforced concrete, and the inner steel members are designed to absorb the impact energy. Detailed FE models were generated to evaluate the performance of the new steel-concrete composite fender under ship-impact loading. Numerical results indicate that the protective performance of the proposed fender is superior to the conventional steel fender. (C) 2015 American Society of Civil Engineers.
机译:钢护舷板在中国被广泛使用,以保护新建桥梁在被船撞时不会倒塌。实际上,与其他类型的桥梁保护系统相比,钢护舷板在中国更为常用。但是,很少有研究来验证这些翼子板在碰撞中的性能。为了开始这项研究,使用船-桥-护舷碰撞的高分辨率有限元分析来研究传统的钢护舷。传统挡泥板的局限性得到了明确证明。尤其是,当装有钢质护舷板的桥梁与船只发生高能碰撞时,其冲击力和动力响应要比无护舷的桥高。因此,作者提出了一种由钢和混凝土组成的新颖的挡泥板设计,以克服常规钢制挡泥板的局限性。在建议的护舷中,与with船直接接触的面板由钢筋混凝土制成,内部钢构件设计成吸收冲击能量。生成了详细的有限元模型以评估新型钢-混凝土复合挡泥板在船舶冲击载荷下的性能。数值结果表明,所提出的防护板的防护性能优于传统的钢质防护板。 (C)2015年美国土木工程师学会。

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