Development and Use of Axial Load Test Databases for Analysis and Design of Soft Rock Sockets

IF 3 3区 工程技术 Q2 ENGINEERING, GEOLOGICAL
Xiaoyong Ye, Chong Tang, K. Phoon, Jinbo Chen
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引用次数: 0

Abstract

In this paper, a total number of 363 rock-socket load tests are compiled into a database – DUT/PileROC/363 and analyzed in a consistent manner. This database is used to evaluate the variability of predictions of mobilized resistances (fs and qb), loads Qa at settlements w = 5–20 mm and 0.5%–2% of socket diameter, and Q-w curves. For fs, qb and Qa, the results are characterized as the mean and coefficient of variation (COV) of the ratio of measured over predicted values. It is observed that (1) both shaft shearing and end bearing can be mobilized at small displacements when good construction and inspection procedures are followed, (2) the majority of empirical models for fs and qb are too simplistic and the resulting predictions are highly dispersive (COV > 0.6), (3) the prediction quality does not necessarily improve with an increased level of model sophistication, (4) rock mass modulus Em is crucial for predicting Qa and Q-w curves, (5) predictions of Qa by one nonlinear and two side-slip design methods are of medium dispersion (COV = 0.3–0.6), and (6) only the nonlinear design method produces Q-w curves that resemble the shape of measured curves in load tests.
开发和使用轴向载荷试验数据库,用于分析和设计软岩套筒
本文将总共 363 次嵌岩荷载试验编入数据库 - DUT/PileROC/363,并以一致的方式进行分析。该数据库用于评估动员阻力(fs 和 qb)、沉降 w = 5-20 毫米和承插口直径 0.5%-2% 时的荷载 Qa 以及 Q-w 曲线的预测值的可变性。对于 fs、qb 和 Qa,结果的特征是测量值与预测值之比的平均值和变异系数 (COV)。结果表明:(1) 如果遵循良好的施工和检查程序,轴的剪切和端部轴承都可以在小位移下被调动起来;(2) fs 和 qb 的大多数经验模型过于简单,导致预测值高度分散(COV > 0.6),(3)预测质量并不一定随着模型复杂程度的提高而提高,(4)岩石质量模量 Em 对预测 Qa 和 Q-w 曲线至关重要,(5)一种非线性设计方法和两种侧滑设计方法对 Qa 的预测具有中等离散性(COV = 0.3-0.6),(6)只有非线性设计方法产生的 Q-w 曲线与荷载试验中测得的曲线形状相似。
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
Canadian Geotechnical Journal
Canadian Geotechnical Journal 地学-地球科学综合
CiteScore
7.20
自引率
5.60%
发文量
163
审稿时长
7.5 months
期刊介绍: The Canadian Geotechnical Journal features articles, notes, reviews, and discussions related to new developments in geotechnical and geoenvironmental engineering, and applied sciences. The topics of papers written by researchers and engineers/scientists active in industry include soil and rock mechanics, material properties and fundamental behaviour, site characterization, foundations, excavations, tunnels, dams and embankments, slopes, landslides, geological and rock engineering, ground improvement, hydrogeology and contaminant hydrogeology, geochemistry, waste management, geosynthetics, offshore engineering, ice, frozen ground and northern engineering, risk and reliability applications, and physical and numerical modelling. Contributions that have practical relevance are preferred, including case records. Purely theoretical contributions are not generally published unless they are on a topic of special interest (like unsaturated soil mechanics or cold regions geotechnics) or they have direct practical value.
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