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Back-Calculation of Soil Modulus from PFWD Based on a Viscoelastic Model

机译:基于粘弹性模型的PFWD土壤模量的后计算

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To improve the accuracy of back-calculation of soil modulus using the portable falling weight deflectometer (PFWD), a viscoelastic method (VEM) overcoming the limitations of the conventional linear elastic method (LEM) was proposed. A quasi-static dynamic analysis technique of Laplace transformation and a modified Gauss–Newton optimization algorithm were adopted in the proposed method. The back-calculation program was compiled with MATLAB. The effectiveness of the proposed method was verified with the in situ plate load test (PLT) conducted on a highway embankment. In situ test results showed that a time lag existed between the peaks of deflection and load, and load-deflection curves were nonlinear, which indicated the viscoelastic nature of the soil. The back-calculated modulus using the LEM and VEM was higher than that using the PLT. In the case of low stiffness soil, the average error of back-calculation using the LEM and VEM was 53.1% and 14.8%, respectively. However, for stiffer soil, the average error of back-calculation using the LEM and VEM method was 12.4% and 4.3%, respectively. Moduli of back-calculation using LEM and VEM methods were used to perform flexible pavement analysis, which showed that with an 8% reduction of modulus, the pavement service life reduced by 25%. More accurate estimation of modulus can save maintenance cost in the future.
机译:通过便携式下降重量偏转仪(PFWD)提高土壤模量的后计算的准确性,提出了一种克服常规线性弹性方法(LEM)的局限性的粘弹性方法(VEM)。采用了三岩变换的准静态动态分析技术和改进的高斯 - 牛顿优化算法。背部计算程序由MATLAB编译。用在公路路堤上进行的原位板负载试验(PLT)验证了所提出的方法的有效性。在原位测试结果表明,在偏转和载荷峰之间存在的时间滞后,负载偏转曲线是非线性的,这表明了土壤的粘弹性性质。使用LEM和VEM的后退模量高于使用PLT的模量。在低刚度土的情况下,使用LEM和VEM的后计算的平均误差分别为53.1%和14.8%。然而,对于富含脂肪的土壤,使用LEM和VEM方法的后计算的平均误差分别为12.4%和4.3%。使用LEM和VEM方法的后计算模态进行柔性路面分析,表明模量减少了8%,路面使用寿命减少了25%。更准确的模量估计可以在将来节省维护成本。

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