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Analysis of natural rock slope deformations under temperature variation: A case from a cool temperate region in Japan

机译:温度变化下天然岩石边坡变形分析:以日本一个温带地区为例

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摘要

In this paper, natural rock slope deformation across fractures predominantly in a chert rock mass was monitored using six surface fracture displacement sensors, and the deformations arising from thermal stresses were predicted using (5 m×5 m) two-dimensional (2D) finite element (FE) plane strain analysis coupled with a model for rock mass expansion due to freezing of pore water. A new and simple method to minimize displacement proportional to temperature (due to thermal response of chert rock mass and sensor) was proposed. By applying the method, the corrected displacement, u', can be well recognized. Under u', clear rock mass movement, which could be related to fracture growth, was observed. In addition, progressive fracture opening and closure were noted. Results from this study indicate insignificant influences of weather conditions on fracture/rock mass movement. Furthermore, under numerical analysis (FE), in the rock mass model (with 1-m deep fracture), tensile stresses that were large enough to induce fracture growth appeared at the fracture tip when temperature lowered. And in the rock slope model (with 1-m deep fracture), small tensile stresses, which were sufficient to cause fracture growth along the planes of weakness, were observed. This research suggests that freezing effects on deformation of chert rock mass are insignificant, and we tentatively suggest that thermal fatigue predominantly caused the permanent fracture deformations.
机译:本文使用六个表面裂缝位移传感器监测主要在石岩体中的裂缝上的自然岩石边坡变形,并使用(5 m×5 m)二维(2D)有限元预测由热应力引起的变形。 (FE)平面应变分析以及由于孔隙水冻结而引起的岩体膨胀模型。提出了一种新的简单方法来最小化与温度成比例的位移(由于ue石岩体和传感器的热响应)。通过应用该方法,可以很好地识别出校正后的位移u'。在u'下,观察到明显的岩体运动,这可能与裂缝的增长有关。另外,注意到进行性骨折的打开和闭合。这项研究的结果表明天气条件对裂缝/岩体运动的影响很小。此外,在数值分析(FE)下,在岩体模型(深度为1 m的裂缝)中,温度降低时,在裂缝尖端会出现足够大的拉伸应力以引起裂缝的生长。在岩石坡度模型(深裂缝为1米)中,观察到很小的拉应力,足以使裂缝沿着软弱面增长。这项研究表明冻结对on石岩体变形的影响微不足道,我们初步认为,热疲劳主要引起永久性裂缝变形。

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