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Impact of Water on the Response and Performance of a Pavement Structure in an Accelerated Test

机译:加速试验中水对路面结构响应和性能的影响

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An accelerated load test using a Heavy Vehicle Simulator (HVS) was performed with the objective of investigating the response behaviour and performance of a commonly used pavement structure in Sweden. The structure consists of 10 cm asphalt bound layers, divided into surface course and bitumen base, over granular base and subbase resting on sandy subgrade. The structure was instrumented to register stresses, strains and deflections during loading. In the test more than 1,000,000 load cycles were applied. After applying the first 500,000 load cycles the water table was raised and a further 500,000 loading cycles were applied. Raising the groundwater table increased the rate of rutting developed in the structure in all unbound layers. A numerical analysis has been carried out to simulate the results. First the response was simulated to get a general overall agreement of the pavement response and the parameters of the model. Thereafter the permanent deformation behaviour in the main test was simulated using a simple three-parameter work hardening model with two sets of parameters for the unbound layers, before and after the groundwater table was raised. The permanent deformation behaviour of all layers was thereafter modelled separately for the two steps. Generally good agreement was established between the permanent deformation measurements and the calculations for all layers.
机译:目的是研究重型车辆模拟器(HVS)的加速载荷试验,以研究瑞典常用路面结构的响应行为和性能。该结构由10厘米的沥青粘结层组成,分为表层和沥青基层,位于砂质路基上的颗粒状基层和路基上。该结构用于检测加载过程中的应力,应变和挠度。在测试中,施加了超过1,000,000个负载循环。施加最初的500,000次加载循环后,将水位升高,然后再施加500,000次加载循环。提高地下水位增加了结构中所有未结合层的车辙的发生率。进行了数值分析以模拟结果。首先,对响应进行仿真,以获得路面响应与模型参数的总体共识。此后,在上升地下水位之前和之后,使用简单的三参数工作硬化模型对主要测试中的永久变形行为进行仿真,该模型具有两组用于未结合层的参数。此后,针对两个步骤分别对所有层的永久变形行为进行建模。在永久变形测量和所有层的计算之间通常建立了良好的一致性。

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