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作 者:李俊峰 LI Junfeng(Beijing China Coal Mine Engineering Co.,Ltd.,Beijing 100013,China;National Engineering Research Center of Deep Shaft Construction,Beijing 100013,China)
机构地区:[1]北京中煤矿山工程有限公司,北京100013 [2]矿山深井建设技术国家工程研究中心,北京100013
出 处:《能源与节能》2024年第7期211-214,共4页Energy and Energy Conservation
基 金:天地科技股份有限公司创新创业资金重点资助项目(2021-2-TD-ZD006)。
摘 要:蒙华铁路集义隧道全长为15417 m,属于高瓦斯隧道,共布置了4条通风竖井。该隧道采取反井法施工竖井,并结合具体工程情况,使用正循环潜孔锤技术进行导孔施工,反井钻机进行扩孔施工,在安装井架后采取锚网喷支护,最终形成了直径为2.0 m的竖井。实践表明,竖井施工后的偏斜角度较小,4号竖井施工效果良好,其偏斜率不超过0.2%,此次项目施工效率高,是中国现阶段反井法一次成井深度最大的施工实践。The Jiyi Tunnel of Menghua Railway has a total length of 15417 m and is a high gas tunnel,with a total of 4 ventilation shafts arranged.The tunnel adopted the reverse well method to construct the vertical shaft,and combined with the specific engineering situation,used the positive circulation down-hole hammer technology for guide hole construction,the raise boring machine for hole expansion construction,and after installing the shaft frame,anchor mesh spray support was adopted,ultimately forming a vertical shaft with a diameter of 2.0 m.Practice shows that the deviation angle after the construction of the vertical shaft is relatively small,and the construction effect of the No.4 vertical shaft is good,with a deviation rate of no more than 0.2%.This project has high construction efficiency and is currently the construction practice in China with the largest depth of single well completion using the raise boring machine.
分 类 号:U455.8[建筑科学—桥梁与隧道工程]
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