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Application of Digital Image Cross Correlation to Study Sinkhole Collapse

机译:数字图像互相关技术在污水池塌陷研究中的应用

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This paper presents the results of a study using a transparent soil experimental technique and numerical modeling to detect 3D deformations resulting from submerged cavities that lead to a sinkhole. Excessive deformations from underground activity beneath highway pavements could lead to sinkhole collapse. The formation of a sinkhole is often sudden and can lead to extensive damage and loss of life, especially in urban areas. The use of transparent soils permitted the visualization of internal ground deformations which allowed for comprehensive evaluation of the extension of failure. A series of finite element analyses have also been carried out for the tests conditions. The observed sinkhole, at the surface, is found to be a small indicator of the final size and magnitude of the internal deformations as a subsequent funnel-shaped depression developed with a hole at the center. The modeling results emphasized the need to extend the repair zone following sinkhole collapse by a minimum distance that equals twice the cavity diameter away and ahead of the developed hole. Results of this study are believed to be of practical interest for predicting surface and internal ground deformations following sinkhole collapse which could be useful for the stability assessment of underground utilities and the development of a restoration plan after collapse occurred. The results also provided approximate bounds to areas affected by the sinkhole allowing for collapse risk to be assessed.
机译:本文介绍了使用透明土壤实验技术和数值模型来检测由淹没型腔导致的沉孔导致的3D变形的研究结果。高速公路人行道下方的地下活动造成的过度变形可能导致塌陷。污水坑的形成通常是突然的,并且可能导致广泛的破坏和生命损失,特别是在城市地区。透明土壤的使用允许可视化内部地面变形,从而可以全面评估破坏的范围。还针对测试条件进行了一系列有限元分析。发现表面观察到的下沉孔是内部变形最终大小和大小的一个小指标,因为随后形成的漏斗状凹陷在中心有孔。建模结果强调需要在塌陷后将修复区域扩大一个最小距离,该距离应等于凹腔直径的两倍,且位于已开发的孔的前方。相信这项研究的结果对于预测塌陷后的地面和内部地面变形具有实际意义,这可能对地下公用设施的稳定性评估以及塌陷发生后的恢复计划的制定很有用。结果还提供了受下沉孔影响区域的近似边界,从而可以评估塌陷风险。

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