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Assessment of the performance of rigid pavement back-calculation through finite element modeling

机译:通过有限元建模评估刚性路面反算的性能

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This study focuses on examining the behavior of rigid pavement layers during the Falling Weight Deflectometer (FWD) test. Factors affecting the design of a concrete slab, such as whether the joints are doweled or undoweled and the spacing between the transverse joints, were considered in this study. Explicit finite element analysis was employed to investigate pavement layers' responses to the action of the impulse of the FWD test. Models of various dimensions were developed to satisfy the factors under consideration. The accuracy of the finite element models developed in this investigation was verified by comparing the finite element- generated deflection basin with that experimentally measured during an actual test. The results showed that the measured deflection basin can be reproduced through finite element modeling of the pavement structure. The resulting deflection basins from the use FE modeling was processed in order to backcalculate pavement layer moduli. This approach provides a method for the evaluation of the performance of existing backcalculation programs which are based on static elastic layer analysis. Based upon the previous studies conducted for the selection of software, three different backcalculation programs were chosen for the evaluation: MODULUS5.0, EVERCALC4.0, and MODCOMP3. The results indicate that ignoring the dynamic nature of the load may lead to crude results, especially during backcalculation procedures.
机译:本研究侧重于检查刚性路面层在落后偏转仪(FWD)试验期间的刚性路面层的行为。影响混凝土板设计的因素,例如关节是否被销钉或未销钉,并且在本研究中考虑了横向接头之间的间隔。采用明确的有限元分析来调查路面层对FWD试验脉冲的作用的反应。开发了各种尺寸的模型,以满足所考虑的因素。通过在实际测试期间通过实验测量的有限元产生的偏转盆来验证在该研究中开发的有限元模型的准确性。结果表明,测量的偏转盆地可以通过路面结构的有限元建模再现。处理来自使用Fe建模的所得偏转盆以使路面模叠层​​进行后覆盖。该方法提供了一种评估了基于静态弹性层分析的现有倒卡程序的性能的方法。根据对选择软件进行的先前研究,选择了三种不同的后划分计划,用于评估:Modulus5.0,Evercalc4.0和ModComp3。结果表明,忽略载荷的动态性质可能导致原油结果,尤其是在后划分过程中。

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