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Vibration Propagation of Dynamic Compaction in Widening Highway Foundations

机译:振动传播在扩大公路基础中的动态压实

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Dynamic compaction is an economical and effective method to improve foundation conditions. When widening the highway foundation, it is unclear whether the law of dynamic compaction vibration impacts the original subgrade and structure, which restricts the use of dynamic compaction technology in the highway foundation-broaden project. By using FLAC 3D numerical calculation software, a dynamic compaction vibration finite difference model was built to analyze the dynamic compaction vibration propagation law of the roadside foundation in the subgrade and pavement structure. At the same time, the vibration acceleration of the key points and the rammer subsoil dynamic pressure value were made as double assessment indicators. The dynamic compaction vibration response of the subgrade and comprehensive evaluation of the foundation reinforcement effect with different parameters were obtained. Through the indoor model test, the reliability of the numerical analysis was verified. The tamping energy of 1500KN?m, drop height of 6m (corresponding rammer weight of 25T)and rammer diameter of 1.5m or 2m are used in the test The result showed that a good foundation reinforcement effect can be reached as well as the minimal vibration effects on the surrounding environment. Compared with flat terrain, the dynamic compaction vibration acceleration attenuation at embankment toe is more significant. For all, the pavement structure vibration accelerations tended to be a rapid decay. The medial maximum acceleration reached to 3.9m/s~2. The compaction vibration's acceleration of road base and sub-base does not significantly change, which both are less than the surface layer.
机译:动态压实是一种改善基础条件的经济有效的方法。加宽公路基础时,目前还不清楚动态压实振动的规律是否会影响原始路基和结构,这限制了在公路基础 - 扩大项目中使用动态压实技术。通过使用FLAC 3D数值计算软件,建立了动态​​压实振动有限差模型,以分析路基和路面结构中路边基础的动态压实振动传播规律。同时,关键点的振动加速度和夯锤底土压力值是双重评估指标的。获得了与不同参数的基础增强效果的路基和综合评价的动态压实振动响应。通过室内模型测试,验证了数值分析的可靠性。在测试中使用1500knΔM,下降高度的夯实能量为6m(相应的夯重25t)和1.5米或2m的夯锤直径显示结果表明,可以达到良好的基础增强效果以及最小的振动对周围环境的影响。与扁平地形相比,堤防脚趾处的动态压实振动加速衰减更为显着。对于所有,人行道结构振动加速趋于快速衰减。内侧最大加速度达到3.9m / s〜2。压实振动的道路基和子基地的加速度不会显着变化,两者都小于表面层。

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