首页> 外国专利> STEPWISE REPEATED DESTABILIZATION AND STABILIZATION OF HIGHLY COLLAPSIBLE SOIL MASS BY 'SOIL NAILING TECHNIQUE' USED FOR CONSTRUCTION OF RAILWAY/ROAD UNDERPASS

STEPWISE REPEATED DESTABILIZATION AND STABILIZATION OF HIGHLY COLLAPSIBLE SOIL MASS BY 'SOIL NAILING TECHNIQUE' USED FOR CONSTRUCTION OF RAILWAY/ROAD UNDERPASS

机译:铁路地下通道的“土钉技术”逐步重复破坏和高度易破坏性土壤的稳定。

摘要

The excavations of side vertical walls for building and underpasses must be shored so that the excavations adjacent to the neighboring properties do not cave in during the constructions. A Soil Nailing system has been used for stabilization of excavations and natural slopes for the last few decades in India and Abroad. Soil Nailing Technique used steel anchor rods inserted directly into the soil mass as a driven nails and when Nails are placed in pre-drilled holes to form grouted nails. In both the cases, it restrained load and the side deformations. In the present study, an innovative technique of ‘Soil Nailing’ has been developed for stepwise vertical de-stabilization and stabilization of compacted collapsible sandy soil for the construction of railway underpasses in live railway loading conditions. This technique is successfully implemented first time in the world for controlled destabilization of vertical cut slope and again stabilization for creating a space for pushing of box for railway underpasses for the length of 22 m and 50 m at two sites, namely Yamuna Bazzar and Apsara border, respectively, in Delhi, India. This Soil Nailing Technique of controlled destabilization of soil and again stabilization in steps has proved a superficial method of stabilization with the other methods for such kind of dynamic loading situations.
机译:用于建筑物和地下通道的侧面垂直墙的开挖必须支撑,以使邻近建筑物附近的开挖在施工期间不会塌陷。在过去的几十年中,印度和国外一直使用土壤钉牢系统来稳定挖掘和自然坡度。土钉技术使用钢制锚杆作为驱动钉子直接插入土壤团块中,并且将钉子放在预先钻孔的孔中形成灌浆钉子。在这两种情况下,都可以抑制载荷和侧面变形。在本研究中,开发了一种“土壤钉牢”的创新技术,用于逐步压实可塌陷的砂土的垂直失稳和稳定作用,用于在铁路现场荷载条件下建造铁路地下通道。该技术在世界范围内首次成功实施,用于控制垂直切坡的失稳,并再次进行稳定,从而为Yamuna Bazzar和Apsara边界的两个站点分别为22m和50 m的铁路地下通道创造了一个用于推挤箱子的空间分别位于印度德里。这种控制土壤失稳并逐步稳定的土钉技术已被证明是一种与其他方法一起用于这种动态荷载情况的表面稳定方法。

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