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Evaluation of Rutting Behaviour of Geocell Reinforced Sand Subgrades Under Repeated Loading

机译:反复荷载下土工格室加筋砂路基的车辙行为评估

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This paper summarizes the results from a series of large scale cyclic model load tests on geocell reinforced and unreinforced homogeneous sand subgrades. The sand subgrades are prepared at 70 % relative density thru pluviation technic in a large steel tank measuring 1 m3. A cyclic load of 0.7 and 7 kN was applied on a circular steel plate of 150 mm diameter to replicate a portion of load transfer from an equivalent single axle wheel load (ESAL) on the sand subgrade. The cyclic load was applied through a double acting dynamic hydraulic 100 kN actuator. A series of tests were conducted to study the effects of width and height of a geocell reinforcement on the cyclic behavior of sand subgrades. The performance improvement is quantified in terms of traffic benefit ratios (TBR), cumulative plastic deformations (CPD), modulus of subgrade reaction (ks), resilient modulus (Mr) and rut depth reduction (RDR) for different number of cycles and plate settlements. The configuration of the geocell that provides highest performance in terms of TBR, CPD, and RDR, is considered to be the optimum size of the geocell. It is observed that the optimum geometry of the geocell is capable of reducing the rut depth of about 75 % at 100 cycles and provide about a TBR of 23 at 10 % of settlement ratio.
机译:本文总结了在土工格室加筋和非加筋均质砂路基上进行的一系列大型循环模型荷载试验的结果。沙土路基通过填土技术以70%的相对密度在一个尺寸为1 m3的大型钢制储罐中制备。在150 mm直径的圆形钢板上施加0.7 kN和7 kN的循环载荷,以复制砂土路基上等效单轴车轮载荷(ESAL)产生的一部分载荷传递。通过双作用动态液压100 kN执行器施加循环载荷。进行了一系列测试以研究土工格室的宽度和高度对砂土路基循环行为的影响。在不同的循环次数和板沉降量下,根据交通效益比(TBR),累积塑性变形(CPD),路基反应模量(ks),弹性模量(Mr)和车辙深度减少(RDR)来量化性能改进。 。在TBR,CPD和RDR方面提供最高性能的地理单元配置被认为是地理单元的最佳大小。观察到,土工格斗的最佳几何形状能够在100个循环时将车辙深度减小约75%,并在沉降比为10%时提供约23的TBR。

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