土工基础 ›› 2021, Vol. 35 ›› Issue (5): 539-543.

• 工程实录 •    下一篇

MJS工法桩内插H型钢在超低净空下应用研究

周 蓉1,杨兰强2,王国权2,李佳明2,孙宝生2   

  1. (1.宁波市鄞城集团有限责任公司,浙江宁波 315010;2.宁波市城建设计研究院有限公司,浙江宁波 315010)
  • 收稿日期:2020-05-05 修回日期:2020-05-18 出版日期:2021-10-31 发布日期:2021-10-21
  • 作者简介:周蓉(1975-),女,高工,研究方向为工程现场施工管理。

MJS Column with H Beam Insertion Installed under Very Low Head Room

ZHOU Rong1, YANG Lanqiang2, WANG Guoquan2, LI Jiaming2, SUN Baosheng2   

  1. (1.Ningbo Yincheng Group Co., Ltd., Ningbo 315010;
    2.Ningbo Urban Construction Design & Research Institute Co. Ltd., Ningbo 315010)
  • Received:2020-05-05 Revised:2020-05-18 Online:2021-10-31 Published:2021-10-21

摘要: 为解决低净空下围护桩施工以及深基坑开挖对邻近建(构)筑物安全保护问题,依托软土地区U型槽深基坑下穿现状桥梁的工程实例,在桥梁下方净空只有1.93 m、基坑边距离桥梁桩基仅2.7 m的前提下,采用MJS工法桩内插H型钢加一道混凝土内支撑的支护形式,可实现在超低净空下施工,保证基坑对邻近桥梁安全。研究表明,该方案与SMW工法桩实施顺序相反,即先施工H型钢,后施工MJS工法桩,但导致MJS工法桩的喷射盲点,需局部采用高压旋喷桩补强。通过现场试验,MJS工法桩成桩直径约3.1~3.2 m,满足设计要求。MJS工法桩对H型钢包裹性较好,无明显裂缝,单轴抗压强度均大于1.5 MPa。H型钢需分割成1.5~2.5 m长,现场拼接,通过剖口对焊和设置导向板等技术,可解决因焊缝过多导致型钢抗弯抗剪性能下降的问题。

关键词: MJS工法桩, H型钢, 超低净空, 施工顺序, 多焊缝

Abstract: This paper presents a case history of deep excavation supporting system installed under a very low headroom restraints for minimizing the impact on the adjacent buildings, utilities and other structures. A U-shaped excavation in soft soils was designed under cross a bridge with active traffic. The net clearance under the bridge was only 1.93 meters and the edge of excavation was 2.7 meters to the bridge pile foundation. Under the very low head constraints, the supporting system was planned to be steel H-beam inserted Metro-Jetting-System (MJS) formed columns with one layer of internal support by reinforced concrete struts. The construction sequence for the excavation supporting system was different than the conventional H-beam inserted MJS columns, that is, MJS column formed after the installation of steel H-beams. However, there are zones of un-jetted exist in this method and the local re-jetting is necessary. The field study indicated that the grouted column formed by the MJS had a diameter of 3.1 to 3.2 meters and the dimensions met the design requirement. There are no-gaps between the steel H-beam and the grouts. The MJS formed soilcrete had an unconfined compressive strength greater than 1.5 MPa. The length of the H-beam for the insertion had to be between 1.5 and 2.5 meters and the H-beam insertion needed to be spliced on-site. The full penetration welding with the guide plate can effectively resolve the strength reduction due to the splicing.

Key words: metro jetting system formed columns, hp beams, low headroom constraint, construction sequence, multi-splices

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