...
首页> 外文期刊>Engineering Geology >Geotechnical characterization of marine sediments in the Ulleung Basin, East Sea
【24h】

Geotechnical characterization of marine sediments in the Ulleung Basin, East Sea

机译:东海Ulleung盆地海洋沉积物的岩土特征

获取原文
获取原文并翻译 | 示例
           

摘要

The geotechnical characteristics of Ulleung Basin sediments are explored using depressurized samples obtained at 2100 m water depth and 110 m below the sea floor. Geotechnical index tests, X-ray diffraction, and SEM images were obtained to identify the governing sediment parameters, chemical composition and mineralogy. We use an instrumented multi-sensor oedometer cell to determine the small-strain stiffness, zero-lateral strain compressibility and electromagnetic properties, and a triaxial device to measure shear strength. SEM images show a sediment structure dominated by microfossils, with some clay minerals that include kaolinite, illite, and chlorite. The preponderant presence of microfossils determines the high porosity of these sediments, defines their microstructure, and governs all macroscale properties. The shear wave velocity increases as the vertical effective stress increases; on the other hand, porosity, permittivity, electrical conductivity, and hydraulic conductivity decrease with increasing confinement. All these parameters exhibit a bi-linear response with effective vertical stress due to the crushable nature of microfossils. Well-established empirical correlations used to evaluate engineering parameters do not apply for these diatomaceous sediments which exhibit higher compressibility than anticipated based on correlations with index properties. Settlements will be particularly important if gas production is attempted using depressurization because this approach will cause both hydrate dissociation and increase in effective stress.
机译:使用在2100 m水深和海床以下110 m处获得的降压样本来探索Ulleung盆地沉积物的岩土特征。获得岩土工程指标测试,X射线衍射和SEM图像,以确定主要的沉积物参数,化学成分和矿物学。我们使用仪器化的多传感器里程表单元来确定小应变刚度,零侧应变可压缩性和电磁性能,并使用三轴设备来测量剪切强度。 SEM图像显示了以微化石为主的沉积物结构,以及一些粘土矿物,包括高岭石,伊利石和绿泥石。微化石的主要存在决定了这些沉积物的高孔隙度,定义了它们的微观结构,并支配了所有宏观性质。剪切波速度随着垂直有效应力的增加而增加;另一方面,孔隙度,介电常数,电导率和水导率随围限的增加而降低。由于微化石的易碎性,所有这些参数均表现出具有有效垂直应力的双线性响应。用于评估工程参数的公认的经验相关性不适用于这些硅藻土沉积物,这些硅藻土的可压缩性比基于指数特性的相关性所预期的要高。如果尝试通过减压生产天然气,沉降将特别重要,因为这种方法会导致水合物解离并增加有效应力。

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