首页> 外文期刊>Journal of soils & sediments >Using micro focus industrial computed tomography to characterize the effects of soil type and soil depth on soil pore characteristics, morphology, and soil compression in Xi'an, China
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Using micro focus industrial computed tomography to characterize the effects of soil type and soil depth on soil pore characteristics, morphology, and soil compression in Xi'an, China

机译:使用微焦点工业计算断层扫描来表征土壤型和土壤深度对土壤孔隙特征,形态和土壤压缩的影响

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摘要

Purpose Land subsidence has caused serious geological damage in many countries, including China. Soil pore number, size, shape, and pore size distribution affect soil deformation and thus land subsidence. Quantification of complex pore structures in different soil types and at various soil depths, however, remains cumbersome. The objective of this study was to quantify pore characteristics of three different soil types using computed tomography (CT) technique, investigate the effects of soil depth, examine the relationships between various parameters, and preliminarily determine the pore deformation pattern. Materials and methods Undisturbed soil samples (70 mm diameter x 50 mm height) of clay, silt, and silty clay soils were collected from two 300-m-deep engineering geological boreholes on both sides of the Xi'an D7 ground fissure. One hundred CT images were acquired for each soil sample. Soil pore characteristics and morphological parameters, including porosity, macroporosity, coarse mesoporosity, microporosity, number of pores, number of macropores (diameter 1000 mu m), number of coarse mesopores (diameter 200-1000 mu m), number of micropores (diameter 200 mu m), circularity, structure model index, degree of anisotropy, and the Euler number, were analyzed. Results and discussion Micropores were generally regularly shaped and the main contributors to the total number of pores, whereas macropores were mostly elongated and contributed to total porosity. With increasing depth, the most noticeable changes appeared in silt soil and the least noticeable in clay soil. The alternate pore deformation pattern was significant in silt and silty clay soils. Conclusions Soil depth significantly influenced all soil pore parameters, whereas soil type significantly affected the remaining parameters, except circularity and degree of anisotropy. The elongated macropores in silt and silty clay soils favor land subsidence in the Xi'an area. The present results can help optimize the groundwater exploitation layer, reducing soil compaction and land subsidence in this area.
机译:目的土地沉降在包括中国在内的许多国家造成严重的地质损害。土壤孔隙数,尺寸,形状和孔径分布影响土壤变形,从而影响土地沉降。然而,不同土壤类型和各种土壤深度的复杂孔结构的定量仍然麻烦。本研究的目的是使用计算机断层扫描(CT)技术来量化三种不同土壤类型的孔隙特征,研究土壤深度的影响,检查各种参数之间的关系,并预先确定孔变形图案。从西安D7地面裂缝两侧的两个300 M-深入工程地质钻孔中收集了粘土,淤泥和粉质粘土土壤的材料和方法未受干扰的土壤样品(直径×50mm高度)。为每个土壤样品获得一百个CT图像。土壤孔隙特征和形态学参数,包括孔隙率,大孔隙度,粗心肌,微孔,孔数,大孔数(直径>1000μm),粗内孔数(直径200-1000μm),微孔数量(直径分析了<200μm),分析了圆形,结构模型指数,各向异性程度和欧拉数。结果和讨论微孔通常是规则的形状和孔总数的主要贡献者,而大量巨大伸长并导致总孔隙率。随着深度的增加,淤泥土壤中出现最明显的变化以及粘土土壤中最少的明显。交替的孔隙变形模式在淤泥和粉质粘土土壤中是显着的。结论土壤深度显着影响了所有土壤孔隙参数,而土壤型显着影响剩余参数,除圆形和各向异性程度外。淤泥和粉质泥土中的细长大型大型牧场占西安地区的土地沉降。目前的结果有助于优化地下水开采层,减少该地区的土壤压实和土地沉降。

著录项

  • 来源
    《Journal of soils & sediments》 |2020年第4期|1943-1959|共17页
  • 作者单位

    China Univ Geosci Beijing Sch Water Resources & Environm Beijing 100083 Peoples R China;

    Chinese Acad Environm Planning State Environm Protect Key Lab Environm Planning Beijing 100012 Peoples R China;

    China Geol Survey Xian Ctr Geol Survey Beijing 100012 Peoples R China;

    China Geol Survey Xian Ctr Geol Survey Beijing 100012 Peoples R China;

    China Univ Geosci Beijing Sch Water Resources & Environm Beijing 100083 Peoples R China;

    China Univ Geosci Beijing Sch Water Resources & Environm Beijing 100083 Peoples R China;

    China Univ Geosci Beijing Sch Water Resources & Environm Beijing 100083 Peoples R China;

    China Univ Geosci Beijing Sch Water Resources & Environm Beijing 100083 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Image analysis; Micro-computed tomography; Pore characteristics; Pore deformation; Pore morphology; Soil compaction;

    机译:图像分析;微观计算机断层扫描;孔隙特征;孔隙变形;孔形态;土壤压实;

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