Investigation of deformation and failure in washan slope considering rainfall conditions based on MSR300 radar monitoring
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摘要: 降雨是誘發滑坡的主要因素之一,尤其在暴雨條件下,更易激發滑坡.隨著南幫邊坡開采高陡化,滑坡發生頻繁.為研究降雨條件下南山礦凹山采場南幫邊坡穩定性特征,采用MSR300型雷達對邊坡進行了連續4 a的實時穩定性監測,基于采集到的采場降雨數據和邊坡滑移數據,分析了降雨量和降雨強度與邊坡變形規律,對凹山采場滑坡各階段進行了劃分,建立了凹山采場邊坡失穩模型和預警閾值.結果表明:凹山采場變形與降雨量呈正相關,服從冪函數規律;邊坡變形速度曲線與降雨強度有良好的一致性,滑坡一般發生在最大降雨強度之后;滑坡階段主要包括初始變形階段,穩定變形階段和加速變形階段;報警閾值分別為:6 h時序內,位移閾值為20 mm,速度閾值1.5 mm·h-1;12 h時序內,位移閾值為30 mm,速度閾值為2.5 mm·h-1.凹山采場滑坡曲線與巖土體非穩定蠕變曲線具有較高的相似性,位移曲線出現了"階躍"現象,速度曲線出現了"尖凸"現象,這種情況易引起滑坡事故,其中在位移曲線的"拐點"處和相應速度曲線的"凸點"處發生滑坡的可能性最大.研究成果為類似礦山邊坡穩定性監測和破壞機制提供了科學依據和參考.Abstract: Rainfall, especially in rainstorm conditions, is one of the major factors considered in simulating landslides. Landslides often occur on the southern slope of Washan stope in Nanshan iron mine as the slope has increased in height and steepness. To determine the influence of rainfall on slope stability, the southern slope of Washan stope was monitored dynamically by MSR300 radar system for four years in real time. Based on data on rainfall and slope deformation, the slope deformation law between rainfall and rainfall intensity was analyzed. The stages of a landslide were classified by taking a landslide on the southern slope of Washan stope as an example. The deformation displacement and speed of this slope as well as the duration subjected to heavy rainfall were generalized. Then, the instability model and warning threshold were established. The results show that the slope deformation is positively correlated with rainfall in accordance with the power function. The slope deformation velocity is in good agreement with the rainfall intensity. Furthermore, the landslide generally occurs after maximum rainfall intensity. The landslide stages were classified into three, namely, initial deformation, stable deformation, and accelerated deformation. The warning threshold of displacement was 20 mm within 6 h and 30 mm within 12 h. The speed threshold was 1.5 mm·h-1 within 6 h and 2.5 mm·h-1 within 12 h. The landslide curve on the stope was highly similar to geotechnical non-steady creep curve. "Sharp convex"and"step jump"phenomena occurred on the curve, which could cause slope slide particularly at the inflection point of the slope deformation displacement curve and convex point of the corresponding velocity curve. The research results can provide a scientific basis and reference for slope stability monitoring and failure mechanism of similar mines.
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Key words:
- slope stability /
- rainfall /
- deformation law /
- warning threshold /
- instability model /
- step jump /
- sharp convex
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