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Applying the hyperbolic method and C_(alpha)C_C concept for settlement prediction of complex organic-rich soil formations

机译:应用双曲线法和C_αC_C概念在富含有机物的复杂地层沉降预测中的应用

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The hyperbolic method has proved applicable for settlement prediction in complex soil formations. However, when an appreciable portion of the settlement is due to secondary compression, settlement prediction based on the slope of the initial linear portion of the hyperbolic plot requires a correction factor that would be different for different amounts of secondary compression. Although inverse of the slope of the final linear portion of the hyperbolic curve can provide reasonable estimates of total settlements, including secondary compression, establishing the curve slope requires data beyond 90 percent consolidation, and this renders the hyperbolic method less useful for practical applications. This paper examined the feasibility of predicting total settlements of heterogeneous soils, which also exhibit prominent secondary compression behaviour, by utilizing the hyperbolic method for estimating ultimate primary consolidation settlement and the time for its completion, and the C_(alpha)C_C concept of compressibility for predicting secondary compression. The applicability of the proposed procedure was examined using the results of laboratory tests and an instrumented test embankment constructed on a typical sabkha formation. The combined use of the hyperbolic method and the C_xC_C concept has been found to provide reasonable estimates of total settlements where the hyperbolic curve was initially concave downward. Contrarily, for hyperbolic plots that do not show convex curvature toward the origin, the hyperbolic method predicted a significantly erroneous time for the completion of primary consolidation, hence leading to unreasonable estimates of secondaiy compression. Thus, where settlement versus time fully obeys the rectangular hyperbolic relationship, total settlement, inclusive of secondary compression, can simply be estimated as the reciprocal of the slope of the fitted straight line.
机译:事实证明,双曲线法适用于复杂土层的沉降预测。但是,当沉降的可观部分是由于二次压缩引起的时,基于双曲线图的初始线性部分的斜率的沉降预测需要针对不同二次压缩量而不同的校正因子。尽管双曲线最终线性部分的斜率的倒数可以提供包括第二次压缩在内的总沉降量的合理估计,但建立曲线斜率需要的数据超过合并的90%,这使得双曲线方法在实际应用中不太有用。本文利用双曲线法估算最终一次固结沉降及其完成的时间,以及利用C_(α)C_C可压缩性概念来预测非均质土壤总沉降的可行性,这些土壤也表现出明显的二次压缩特性。预测二次压缩。使用实验室测试的结果以及在典型的萨布哈地层上建造的仪器化测试路堤,对所提出程序的适用性进行了检查。已经发现,双曲线方法和C_xC_C概念的组合使用可为双曲线曲线最初向下凹的总沉降量提供合理的估计。相反,对于没有向原点显示凸曲率的双曲线图,双曲线方法预测完成一次固结的时间明显错误,因此导致对二次压缩的估计不合理。因此,在沉降与时间完全遵循矩形双曲线关系的情况下,包括第二次压缩在内的总沉降可以简单地估计为拟合直线斜率的倒数。

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