Static load test curve analysis based on soil field investigations

IF 1.2 4区 工程技术 Q3 ENGINEERING, MULTIDISCIPLINARY
P. Siemaszko, Z. Meyer
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引用次数: 9

Abstract

This paper expands the M-K curve theory with examples of the most commonly mentioned pile-soil mechanics behaviours in the literature and their corresponding κ2 variations. A brief introduction shows the history of the Meyer-Kowalow theory and its basic assumptions. This is followed by the relationship between in situ investigation CPT results, with parameters C1, C2, Ct used to approximate the load-settlement curve according to the M-K theory. The Meyer-Kowalow curve satisfies asymptotic behaviour for small loads, where linear theory applies, and for limit loads, when pile displacement is out of control. Essential in the description are constant parameters C, which refer to the aggregated Winklers modulus, Ngr limit loads and k, which is crucial for static load test results. For this reason, the authors sought to calculate the κ value based upon soil mechanics principles. This article shows methods for checking statistical mathematical calculations, published earlier by Meyer using CPT investigations. It presents real case calculations and directions for future planned research.
基于土壤现场调查的静载试验曲线分析
本文以文献中最常提到的桩土力学行为及其相应的κ2变化为例,对M-K曲线理论进行了扩展。简要介绍Meyer-Kowalow理论的历史及其基本假设。其次是原位调查CPT结果之间的关系,根据M-K理论,使用参数C1, C2, Ct近似荷载-沉降曲线。对于小荷载,Meyer-Kowalow曲线满足渐近行为,适用线性理论,对于极限荷载,当桩位移失控时。描述中必不可少的常数参数C,它指的是总和温克勒斯模量、Ngr极限载荷和k,这对静载试验结果至关重要。因此,作者试图根据土力学原理计算κ值。本文展示了检验统计数学计算的方法,这些计算是Meyer先前使用CPT调查发表的。给出了实际案例计算和未来计划研究的方向。
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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来源期刊
CiteScore
2.80
自引率
16.70%
发文量
0
审稿时长
6-12 weeks
期刊介绍: The Bulletin of the Polish Academy of Sciences: Technical Sciences is published bimonthly by the Division IV Engineering Sciences of the Polish Academy of Sciences, since the beginning of the existence of the PAS in 1952. The journal is peer‐reviewed and is published both in printed and electronic form. It is established for the publication of original high quality papers from multidisciplinary Engineering sciences with the following topics preferred: Artificial and Computational Intelligence, Biomedical Engineering and Biotechnology, Civil Engineering, Control, Informatics and Robotics, Electronics, Telecommunication and Optoelectronics, Mechanical and Aeronautical Engineering, Thermodynamics, Material Science and Nanotechnology, Power Systems and Power Electronics.
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