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首页> 外文期刊>International journal of geomechanics >Dynamic Numerical Analysis of Antimoisture-Damage Mechanism of Permeable Pavement Base
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Dynamic Numerical Analysis of Antimoisture-Damage Mechanism of Permeable Pavement Base

机译:透水路面基层防潮害机理的动力数值分析

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摘要

As a permeable base material of pavement, the large stone porous asphalt mixture (LSPM) is used widely in China to lessen the moisture damage of the asphalt pavement. However, the dynamics mechanism of the inhibitory effect of permeable base on moisture damage is not clear yet. The dynamic fluid-solid coupling analysis of the saturated pavement with LSPM base course, considering the asphalt mixtures as the porous medium, was performed using the finite difference numerical code FLAC3D. Numerical results revealed that the positive and negative dynamic pore pressure alternated in the pavement with the approaching and leaving of the wheel loads. The phenomenon of water pumping out of and sucking into the pavement under the moving loads was proved. The flow of fluid in pavement can be regarded as the laminar flow. The presence of the LSPM base course greatly decreased the dynamic pore pressure and the scouring force in the surface course because of the large permeability coefficient of the LSPM. The location of the maximum dynamic pore pressure also changed due to the LSPM base course. Due to the permeable base, the dissipation of the dynamic pore pressure was accelerated and thus the moisture damage was lessened.
机译:大型石质多孔沥青混合料(LSPM)作为路面的渗透性基础材料,在中国被广泛使用,以减轻沥青路面的湿气损害。但是,尚不清楚渗透性基质对水分破坏的抑制作用的动力学机理。使用有限差分数值代码FLAC3D,对以沥青混合料为多孔介质的LSPM基层饱和路面进行了动态流固耦合分析。数值结果表明,随着车轮载荷的接近和离开,路面的正,负动态孔隙压力交替变化。证明了在运动荷载作用下水从路面中抽出并吸入路面的现象。路面中的流体流可以视为层流。由于LSPM的渗透系数大,LSPM基层的存在大大降低了动态孔隙压力和地表过程中的冲刷力。最大动态孔隙压力的位置也因LSPM基本过程而改变。由于具有可渗透的基底,加速了动态孔隙压力的耗散,因此减少了湿气损害。

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