...
首页> 外文期刊>Current Science: A Fortnightly Journal of Research >Blasting technique for stabilizing accident-prone slope for sustainable railway route
【24h】

Blasting technique for stabilizing accident-prone slope for sustainable railway route

机译:用于稳定事故倾斜坡度的爆破技术,可持续铁路路线

获取原文
获取原文并翻译 | 示例
           

摘要

Konkan Railway has many unstable slopes along the 741 km long route from Roha to Thokur in the states of Maharashtra, Goa and Karnataka in India. Frequent cases of boulder fall, slope failure and landslide used to occur on the track during the rainy season. Such cases have resulted in several severe train accidents, traffic interruptions, loss of lives and assets. Hence the Konkan Railway Corporation deployed several geotechnical measures such as wire-netting, retaining wall, rock bolting and shotcreting for stability enhancement. However, none of these measures proved effective and accidents continued. Finally, the Konkan Railway Corporation decided to redesign the cut-slopes using blasting. Excavation of hard rock for its removal without damaging the existing track (2-3 m away from the slope) and disrupting the traffic, was a daunting task. An unplanned blast would have resulted in the closure of the route for hours. The present study explains the method in which entire cutting was redesigned by formation of 5 to 2 m wide berms at an interval of 6 m bench height from rail track level using novel direction controlled blasting technique. Further, stability of the cut-slope, before and after exacavation, has been determined using kinematic analysis and 3D numerical modelling. Similar technique can be adopted to widen or stabilize an active transportation route in hills.
机译:Konkan Railway沿着罗哈到罗哈的741公里,在Maharashtra,Goa和Karnataka州的雷科尔在印度的喧嚣中有许多不稳定的斜坡。在雨季期间,博尔德坠落的频繁情况下降,坡度衰竭和滑坡在轨道上发生。这种情况导致了几种严重的火车事故,交通中断,生命丧失和资产。因此,Konkan Railway Corporation部署了几种岩土工程措施,如电线网,挡土墙,岩石螺栓,用于稳定增强。但是,这些措施都没有证明有效和事故仍在继续。最后,Konkan铁路公司决定使用爆破重新设计切割斜坡。坚硬岩石的挖掘以拆卸而不损坏现有的轨道(远离坡度2-3米)并扰乱流量,是一项艰巨的任务。无计划的爆炸将导致途径关闭几个小时。本研究介绍了通过使用新颖的方向控制的爆破技术在轨道轨道水平的6米长凳高度的间隔下通过形成5至2米宽的放浆来重新设计整个切割的方法。此外,使用运动学分析和3D数值模型确定了馏出口之前和之后的切口,之前和之后的稳定性。可以采用类似的技术来扩大或稳定丘陵的积极运输路线。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号