ISSN 1003-8035 CN 11-2852/P

    坡面泥石流冲击被动柔性防护网耦合动力响应

    Coupled dynamic response analysis of flexible barrier under slope debris flow

    • 摘要: 目前,被动柔性防护网相关性能检验仅针对落石冲击场景,在坡面泥石流冲击作用下,其耦合动力响应的研究很少。基于此现状,文章借用LS-DYNA软件展开深入研究。首先,对某标称能级为5000 kJ的被动柔性防护网足尺落石冲击试验进行反演分析。通过对比关键绳索内力、耗能器伸长量及缓冲距离等关键指标,验证了所构建计算模型的准确性和可靠性。其次,构建了ALE-FEM耦合计算模型,研究了坡面泥石流冲击作用下被动柔性防护网力学响应特征,并与落石冲击工况进行了差异对比。最后,以泥石流流速和冲击能量作为变量,开展了参数化数值模拟。分析了冲击能量耗散转化特征,并从能量的角度,探究被动柔性防护网的极限防护能力。结果表明:被动柔性防护网能够成功拦截标称能级下的坡面泥石流,且相较于落石冲击工况,整体力学响应明显偏小;在冲击过程中,能量主要转化为泥石流内能;此外,被动柔性防护网具备成功拦截4倍标称能级坡面泥石流的的能力。

       

      Abstract: Currently, performance testing of flexible barrier only focus on rockfall impacts, lacking research on the coupled dynamic response under slope debris flow impact. In this study, based on LS-DYNA, a full-scale impact test with a nominal energy level of 5000 kJ of flexible barrier was firstly back-analyzed, comparing and analyzing the key rope forces, elongation of energy dissipators, and buffer distance to verify the effectiveness of the computational model. Next, an ALE-FEM numerical calculation model was built to investigate the mechanical response characteristics of the flexible barrier under slope debris flow impact, and compared them with rockfall impact conditions. Finally, parametric numerical simulations of debris flow velocity and impact energy were carried out to analyze the dissipation and transformation characteristics of impact energy and explore the ultimate protective capacity of flexible barrier from an energy perspective. The results showed that the flexible barrier can successfully intercept slope debris flows under the nominal energy levels, with overall mechanical responses significantly smaller than those under rockfall impacts. The impact energy mainly converted into internal energy of debris flows. Flexible barriers can successfully intercept slope debris flows up to four times the impact energy of rockfalls.

       

    /

    返回文章
    返回