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A Validated Discrete Element Modeling Approach for Studying Geogrid-Aggregate Reinforcement Mechanisms

机译:一种验证的离散元素建模方法,用于研究地质格栅综合加固机制

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Geogrids are commonly used in transportation applications for stabilization and reinforcement purposes. Factors affecting the interactions or interlock mechanisms between geogrids and aggregates may include but not limited to aggregate size and shape properties, geogrid types and properties, compactive efforts during installation, and loading conditions. To better quantify these effects, our recent research efforts at the University of Illinois have introduced the use of an image-aided Discrete Element Modeling (DEM) approach for studying the interactions of such local effects, i.e., aggregate particles and geogrid properties interacting at the micro-level to produce a "stiffened or reinforced" zone. A recent experimental study was utilized to model and demonstrate the effectiveness of different aperture-sized biaxial geogrids in the reinforcement of ballast aggregates to reduce settlement under cyclic loading. The image-aided 3-D DEM methodology successfully modeled the interactions between the ballast aggregate size and shape properties and the different aperture sized biaxial geogrids. Similar to the experimental study, only certain biaxial geogrid aperture sizes improved the performance of the reinforced ballast when compared to the larger settlement accumulated in the unreinforced ballast. The methodology has the potential for quantifying individual effects of various geogrid products on aggregates with different size and shape properties.
机译:地质格栅通常用于运输应用以进行稳定和加固目的。影响地质格栅和聚集体之间的相互作用或互锁机制的因素可以包括但不限于聚合大小和形状属性,地理格栅类型和性质,安装过程中的压缩努力以及装载条件。为了更好地量化这些效果,我们最近在伊利诺伊大学的研究努力介绍了使用图像辅助分立元素建模(DEM)方法来研究这种局部效应的相互作用,即聚集粒子和地质格栅属性在互动中的相互作用微级以生产“加强或加强”区域。最近的实验研究用于模拟并证明不同孔径大小的双轴土工格栅在镇流器聚集体加固中的有效性,以减少循环载荷下的沉降。图像辅助3-D DEM方法成功建模了镇流器骨料尺寸和形状特性与不同孔径尺寸的双轴土工格栅之间的相互作用。与实验研究类似,只有某些双轴地质格栅孔径尺寸改善了加强镇流器的性能,与在未原始的镇流器中积累的较大沉降相比时。该方法具有量化各种土工格栅产品对具有不同尺寸和形状特性的聚集体的个性效果。

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