上海城市覆盖层塌陷天坑成因调查:分析主导因素并提出减缓策略

IF 1.6 Q4 ENVIRONMENTAL SCIENCES
Bing Li, Hanmei Wang, Hang Tang
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引用次数: 0

摘要

城市覆盖层塌陷天坑具有破坏性影响,是一项重大的全球性挑战。以往的研究发现,地下水波动、地下土壤条件、管道泄漏、降水和地下施工活动是造成这些现象的主要因素。然而,不同城市环境的独特地质环境导致影响天坑形成的主要因素各不相同。本研究以上海这座城市为研究对象,探讨全球城市化地区的天坑动态。我们采用空间分析和统计方法来研究上海在过去二十年中记录的天坑数据,并将这些事件与该城市的浅砂层、地面高程和地表水的邻近程度联系起来。我们的目标是找出影响上海天坑发生的主导因素,并为有效的科学管理和预防奠定基础。主要研究结果表明,该地区的大多数天坑都与较薄的浅砂层、中低的地面标高以及附近没有河流有关。此外,许多天坑与粘性土层下的承压含水层中的地下空隙有关。缺乏历史河道,被城市发展所掩盖,也间接导致了天坑的形成。我们建议加强城市河道管理和排水系统,以减轻积水可能造成的破坏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating the drivers of urban cover-collapse sinkholes in shanghai: analyzing dominant factors and proposing mitigation strategies

Urban cover-collapse sinkholes pose a significant global challenge due to their destructive impacts. Previous studies have identified groundwater fluctuations, subsurface soil conditions, pipeline leakage, precipitation, and subterranean construction activities as key contributors to these phenomena. However, unique geological settings across different urban environments lead to variations in the primary factors influencing sinkhole formation. This study focuses on Shanghai, a city notable for its extensive urbanization and rich historical context, to explore the dynamics of sinkholes within urbanized areas worldwide. We employ spatial analysis and statistical methods to examine data on sinkholes recorded in the past two decades in Shanghai, correlating these events with the city’s shallow sand layer, ground elevation, and proximity to surface water. Our goal is to identify the dominant factors governing sinkhole occurrence in Shanghai and to lay the groundwork for their effective scientific management and prevention. Key findings indicate that most sinkholes in the area are associated with a thin shallow sand layer, low to moderate ground elevations, and the absence of nearby rivers. Additionally, many sinkholes correlate with subterranean voids within the confined aquifer beneath the cohesive soil layer. The lack of historical river channels, obscured by urban development, also indirectly contributes to sinkhole formation. We recommend enhancing urban river management and drainage systems to mitigate potential damage from water accumulation.

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CiteScore
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