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OPTIMIZING PARAMETERS OF GEOGRID FOR SUBGRADE CONNECTING IN HIGH-SPEED RAILWAY

机译:高速铁路路基连接的土工格栅优化参数

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摘要

In order to study optimizing construction parameters of laying geogrid for subgrade connecting in highspeed railway, the centrifuge model test and numerical simulation methods were adopted. According to results of test and simulations, deformation distribution of subgrade section was obtained. It showed that application of geogrid could effectively enhance subgrade integration property and foundation bearing capacity, which observably resulted in reducing differentia settlement of the junctions of the new subgrade and the old, the old subgrade surface and the part under the sleepers. Moreover, the pre-deformation of subgrade after applying geogrid was large while the post-deformation was small that could decrease post-construction settlement. By numerical simulation calculating of geogrid location, economic width and the layer number, a reasonable optimizing scheme applying double-layers geogrid to subgrade was confirmed. It will be instructive to control differentia settlement for the connecting subgrade projects in high-speed railway.
机译:为了研究优化高速铁路路基连接铺设土工格栅的施工参数,采用了离心模型试验和数值模拟方法。根据试验和模拟结果,获得了路基断面的变形分布。结果表明,土工格栅的应用可以有效地提高路基的整体性和地基承载力,从而明显减少了新路基与旧路基,旧路基表面以及枕木下部分交界处的差异沉降。此外,应用土工格栅后路基的预变形较大,而后变形较小,这可能会减少施工后的沉降。通过对土工格栅位置,经济宽度和层数的数值模拟计算,确定了将双层土工格栅应用于路基的合理优化方案。控制高速铁路连接路基工程的差异沉降将是有益的。

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