中国延安新区山体开挖与城市建设区高填方地基的长期沉降特征研究

IF 4.1 2区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Xiaokun Hou, Shengwen Qi, Yongtang Yu, Jianguo Zheng
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引用次数: 0

摘要

开山凿石造城(MECC)是人类在中国黄土高原进行的一项重要工程,旨在促进城市扩张。了解开山筑城工程遗址的长期聚落行为对有效评估该工程在重塑地貌和扩大城市面积方面的成功非常重要。本研究选择了一个典型的 MECC 工程,特别是延安市新区刘家沟河谷上游地区,作为研究长期沉降特征的案例。研究包括对不同干密度和含水量的土样进行蠕变试验,并在 17 个特定点对地表沉降进行连续原位监测。此外,还开发了一个数值模型,并利用现场监测数据进行校准,以预测长期沉降。研究结果表明,土壤干密度的增加和土壤含水量的降低有助于减少变形。值得注意的是,沉降主要表现在填充区域内,土壤厚度增加会加剧沉降效应。随着时间的推移,累积沉降的变形率逐渐减小,直至达到稳定状态。这些结果为评估 MECC 项目的长期稳定性提供了启示,有助于该地区未来工程的决策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Long-Term Settlement Characterization of High-Filling Foundation in the Mountain Excavation and City Construction Area of the Yan’an New District, China

Mountain Excavation and City Construction (MECC) represents a prominent anthropogenic endeavor aimed at facilitating urban expansion in the Loess Plateau of China. It is important to comprehend the long-term settlement behavior at MECC engineering sites to effectively assess the project’s success in reshaping landscapes and expanding urban areas. In this study, a typical MECC project, specifically the upstream area of the Liujiagou Valley within the new district of Yan’an City, is selected as a case study to investigate long-term settlement characteristics. The research involved conducting creep tests on soil samples with varying dry densities and moisture content and continuous in-situ monitoring of ground surface settlement at 17 specific points. Furthermore, a numerical model was developed and calibrated using the in-situ monitoring data to predict the long-term settlement. The findings reveal that an increase in soil dry density and a decrease in soil water content contribute to reduced deformation. Notably, settlement primarily manifests within the filled areas, with greater soil thickness exacerbating settlement effects. Over time, cumulative settlement exhibits a progressively diminishing rate of deformation until it attains a stable state. These results provide insights for assessing the long-term stability of MECC projects, facilitating decision-making in future endeavors within this region.

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来源期刊
Journal of Earth Science
Journal of Earth Science 地学-地球科学综合
CiteScore
5.50
自引率
12.10%
发文量
128
审稿时长
4.5 months
期刊介绍: Journal of Earth Science (previously known as Journal of China University of Geosciences), issued bimonthly through China University of Geosciences, covers all branches of geology and related technology in the exploration and utilization of earth resources. Founded in 1990 as the Journal of China University of Geosciences, this publication is expanding its breadth of coverage to an international scope. Coverage includes such topics as geology, petrology, mineralogy, ore deposit geology, tectonics, paleontology, stratigraphy, sedimentology, geochemistry, geophysics and environmental sciences. Articles published in recent issues include Tectonics in the Northwestern West Philippine Basin; Creep Damage Characteristics of Soft Rock under Disturbance Loads; Simplicial Indicator Kriging; Tephra Discovered in High Resolution Peat Sediment and Its Indication to Climatic Event. The journal offers discussion of new theories, methods and discoveries; reports on recent achievements in the geosciences; and timely reviews of selected subjects.
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