首页> 外文期刊>Engineering Geology >Soil classification analysis based on piezocone penetration test data - A case study from a quick-clay landslide site in southwestern Sweden
【24h】

Soil classification analysis based on piezocone penetration test data - A case study from a quick-clay landslide site in southwestern Sweden

机译:基于压电锥渗透测试数据的土壤分类分析-以瑞典西南部的快速粘土滑坡场为例

获取原文
获取原文并翻译 | 示例
       

摘要

Cone penetration test (CPT) and piezocone penetration test (CPTu) methods can be effective in site characterization and are important for soil profiling and classification. Extensive experience exists that relates CPT and CPTu results to soil type/state and these are often the preferred in-situ tools for subsurface investigations, soil exploration and the evaluation of different engineering soil properties, compared with conventional laboratory testing. In this study, eight methods, consisting of traditional and nontraditional ones, for soil classification and prediction of soil type and state using CPTu data were examined and tested. The CPTu data not only provide valuable information on soil types, but also can be used for deriving correlations with engineering soil properties for the purposes of hazard analyses and design of foundations. We carried out and established a region-specific correlation between CPTu data and soil properties for three location test points in southwestern Sweden at a quick-clay landslide site. First, an analysis of the available CPTu data was performed and then classification of the soils was made. After determination and identification of the soil profiles, the results were further evaluated using the Unified Soil Classification System (USCS) and converted to CPT-SPT charts. We summarize results from each of these methods, including a description of the available charts and their performance for soil classification. From CPTu data, we provide high-resolution soil profiles from the three test points. Our work allowed the detection of potential sensitive fine-grained clays, which are responsible for landslides in the study area, however, in most cases occurring above coarse-grained materials. These materials were also detected in the CPTu data and show good correspondence with available reflection seismic profiles from the site. (C) 2015 Elsevier B.V. All rights reserved.
机译:锥入度测试(CPT)和压电锥入度测试(CPTu)方法可以有效地进行站点表征,并且对于土壤概况分析和分类非常重要。已有丰富的经验将CPT和CPTu结果与土壤类型/状态相关联,与传统的实验室测试相比,这些通常是进行地下调查,土壤勘探和评估不同工程土壤特性的首选现场工具。在这项研究中,检验和测试了由传统方法和非传统方法组成的8种方法,用于土壤分类和使用CPTu数据预测土壤类型和状态。 CPTu数据不仅提供了有关土壤类型的有价值的信息,而且还可以用于与工程土壤特性的相关性,以进行危害分析和基础设计。在瑞典西南部的一个快速粘土滑坡现场,我们针对三个位置测试点进行了CPTu数据与土壤特性之间的区域特定关联。首先,对可用的CPTu数据进行分析,然后对土壤进行分类。在确定和识别土壤剖面后,使用统一土壤分类系统(USCS)进一步评估结果,并将其转换为CPT-SPT图。我们总结了每种方法的结果,包括对可用图表的描述及其在土壤分类中的性能。根据CPTu数据,我们从三个测试点提供了高分辨率的土壤剖面。我们的工作允许对潜在敏感的细粒粘土进行检测,这些细粒粘土是造成研究区域滑坡的原因,但是,在大多数情况下,这些情况发生在粗粒材料之上。在CPTu数据中也检测到了这些材料,这些材料与现场可用的反射地震剖面显示出良好的对应关系。 (C)2015 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号