Statistical Analysis of Core Strength of Deep Cement Mixing Ground

Tsutomu Namikawa
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Abstract

Cement-treated ground by deep cement mixing has been used for several geotechnical structures widely. In quality assurance processes of this method, statistical parameters, mean and standard deviation, of unconfined compressive strength of cement-treated soils are used. The mean and standard deviation are normally used to assure the quality of the improved ground. These parameters evaluated from core strength data are the sample statistical parameters, indicating these parameters involve the statistical uncertainty. Thus the evaluation of the statistical uncertainty is needed when assuring the quality of the improved ground precisely. Moreover, the spatial correlation exists in core strength data. The statistical uncertainty emerging in the evaluation of the population statistical parameters is possibly affected by the spatial correlation. This paper presents the statistical analysis of core strength data observed in several deep cement mixing projects. The mean, standard deviation, and autocorrelation distance, were adopted as the statistical parameters of the strength. The type of the probability distribution of the core strength was investigated by the Kolmogoronv-Smirnov (K-S) test. The goodness fit of the normal and log-normal distributions was examined against the core strength data. The autocorrelation distance, which is the parameter representing the characteristic of the spatial correlation, was calculated from the distribution of the core strength using the maximum-likelihood method. The statistical uncertainty of the statistical parameters was evaluated using a Bayesian inference approach. In the Bayesian inference approach, a Markov chain Monte Carlo method was adopted to calculate the realizations of the population statistical parameters. The analysis results indicated the statistical uncertainty included in the statistical parameters is significantly affected by the spatial correlation.
深层水泥搅拌地面岩心强度统计分析
通过深层水泥搅拌对地面进行水泥处理的方法已被广泛应用于多个岩土工程结构中。在这种方法的质量保证过程中,使用了水泥处理过的土壤的无压抗压强度的统计参数,即平均值和标准偏差。平均值和标准偏差通常用于确保改良地层的质量。根据岩心强度数据评估的这些参数是样本统计参数,表明这些参数涉及统计不确定性。因此,在精确保证改良地层质量时,需要对统计不确定性进行评估。此外,岩心强度数据存在空间相关性。群体统计参数评估中出现的统计不确定性可能会受到空间相关性的影响。本文对多个深层水泥搅拌项目中观察到的岩心强度数据进行了统计分析。采用平均值、标准差和自相关距离作为强度的统计参数。用 Kolmogoronv-Smirnov (K-S) 检验法研究了岩心强度的概率分布类型。根据岩芯强度数据检验了正态分布和对数正态分布的拟合优度。自相关距离是代表空间相关性特征的参数,采用最大似然法根据岩心强度分布计算得出。统计参数的统计不确定性采用贝叶斯推理方法进行评估。在贝叶斯推断法中,采用了马尔科夫链蒙特卡洛法来计算群体统计参数的实现值。分析结果表明,统计参数的统计不确定性受空间相关性的影响很大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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