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Deltaic soil behavior classification using CPTu records-Proposed approach and applied to fifty-four case histories

机译:共青土壤行为分类使用CPTU记录 - 提出的方法,并应用于五十四个病例历史

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摘要

For the past four decades, the CPT has played a key role in onshore and offshore soil investigations. One of the main applications of cone penetration test (CPT) is the soil behavioral classification. Most of the developed methods for soil identification using CPT and CPTu (piezocone) data are well categorized for common soils, such as clays, silts, and sands. Soils with low resistance or more compressibility generally involve problems in geotechnical engineering practice and construction projects. Consequently, these unusual deposits require further evaluation and more detailed data. Five major groups of problematic soils including: liquefiable, sensitive, peaty, collapsible, and expansive soils have been considered in this study. One hundred and forty CPT and CPTu test records were collected from fifteen countries. Sixty-one of the records are related to difficult soils. A brief comparison is performed for currently used soil behavioral classification charts, such as by Campanella et al. (1985), Robertson (1990), Jefferies and Davies (1991) and Eslami and Fellenius (1997). Analysis based on CPT data indicates that a few commonly used charts recognize relatively well problematic deposits. However, further studies are needed to increase the accuracy and capability of methods. Existing charts have some problems due to the limitations of the nature of rectangular charts based on two axes. A new format of classification chart, i.e., triangular form containing cone tip resistance (q(c)), sleeve friction (f(s)), and pore pressure (u(2)) is proposed for soil identification which can be realized in practice. The proposed chart with more accuracy and less scattering of data than the previous charts is able to identify soil types particularly for deltaic soils.
机译:在过去的四十年中,CPT在陆上和海上土壤调查中发挥了关键作用。锥形渗透试验(CPT)的主要应用之一是土壤行为分类。使用CPT和CPTU(压电藻)数据的大部分发达的土壤鉴定方法都适用于普通土壤,例如粘土,淤泥和砂。电阻低或更压缩性的土壤通常涉及岩土工程实践和建筑项目中的问题。因此,这些不寻常的存款需要进一步的评估和更详细的数据。在本研究中考虑了五个主要的有问题土壤,包括:液化,敏感,泥质,可收缩,可膨胀的土壤。从十五个国家收集了一百四十个CPT和CPTU测试记录。六十一记录与困难的土壤有关。对当前使用的土壤行为分类图表进行了简短的比较,例如Campanella等人。 (1985),Robertson(1990),Jefferies和Davies(1991)和Eslami和Fellenius(1997年)。基于CPT数据的分析表明,一些常用的图表识别相对良好的有问题的存款。然而,需要进一步的研究来提高方法的准确性和能力。由于基于两个轴的矩形图表性质的局限性,现有图表具有一些问题。一种新的分类图表,即含有锥形尖端电阻(Q(c)),套筒摩擦(f(s))和孔隙压力(u(2))的三角形形式,用于土壤识别,可以实现实践。提出的图表具有比以前的图表更准确,更低的数据散射能够识别尤其是用于红细土的土壤类型。

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