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Experimental Study of Physical Models for Sinkhole Collapses in Wuhan, China

机译:中国武汉秸秆孔塌陷物理模型的实验研究

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Many sinkholes collapsed since 1998 in Wu Han, China. Sinkhole collapses have put local people's properties and safety in great danger. This paper introduces a large-scale experimental study to implement physical models of sinkhole collapse in this area. Two conceptual models of sinkhole collapsing have been established based on the processes of sinkhole formation, basic geologic conditions, hydrodynamic features, and human activities in this area. Rock, soil, and water samples from sinkhole collapsing areas have been used for a large-scale experiment to verify the conceptual models. High resolution fluid pressure transducers and soil pressure transducers were used in the experimental study to monitor pressure changes in fluids and soil. Measurements of pressure changes were automatically collected and inspected during the experiment. Quantitative studies of Quaternary groundwater use, karst water use, Quaternary soil texture and structure, and the size of the pipelines of karst openings have been conducted to investigate their relationships with the sinkhole collapsing processes. The threshold values of dominant physical properties to trigger a sinkhole collapse have also been studied in this area. Results from this research project provided important information and guidelines on how to prevent future sinkhole collapse in this area.
机译:自1998年以来,许多下沉孔在吴汉,中国。陷阱坍塌使当地人民的物业和安全性造成了极大的危险。本文介绍了大规模的实验研究,实现了该地区的污水塌陷物理模型。基于污水孔形成,基本地质条件,流体动力学特征和人类活动的过程建立了两个概念的污水坍塌模型。来自污水坍塌区域的岩石,土壤和水样已用于大型实验,以验证概念模型。实验研究中使用了高分辨率流体压力传感器和土壤压力传感器,以监测流体和土壤中的压力变化。在实验期间自动收集和检查压力变化的测量。已经进行了季度地下水的定量研究,喀斯特水,季纹理和结构,以及岩溶开口管道的大小,以研究与污水塌陷过程的关系。在该领域还研究了触发污水孔塌陷的主要物理性质的阈值。该研究项目的结果提供了关于如何防止该地区未来陷阱塌陷的重要信息和指导方针。

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