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首页> 外文期刊>Canadian Geotechnical Journal >Axial performance of micropile groups in cohesionless soil from full-scale tests
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Axial performance of micropile groups in cohesionless soil from full-scale tests

机译:全尺寸试验中粘性土壤中微疏水组的轴向性能

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摘要

Hollow bar micropile (HBMP) groups are used for supporting large loads as an alternative foundation option to large diameter drilled shafts. In such cases, it may be necessary to increase the micropile's diameter by increasing the drill bit diameter (D-b). This paper investigates experimentally and numerically the effect of increasing Db and micropile spacing on the group performance. A field load testing program was conducted on four groups of HBMPs installed in sand; each group comprised four micropiles arranged in a square configuration. All micropiles were constructed with the same size hollow bar, D-h = 51 mm; two groups comprised micropiles constructed with drill bit, D-b = 115 mm, and two groups comprised micropiles constructed with drill bit, D-b = 152 mm. One group of each set was installed with spacing to micropile diameter ratio, S/D-b = 3 and the other group with S/D-b = 5. In addition, full 3D finite element model (FEM) was developed and calibrated to simulate the behaviour of micropile groups and to evaluate the failure load for groups that were not loaded to failure. The results demonstrated that micropile groups constructed with the large diameter drill bits displayed higher stiffness and load carrying capacity than the groups constructed with small diameter bits, which confirms the effectiveness of using a larger drill bit. In addition, the group efficiency ratio values at both working load and ultimate capacity were found to be close to unity for all groups. The ultimate skin friction values of grouted micropiles obtained from this study were higher than the values suggested by the US Federal Highway Administration for medium to very dense sand. It was also found that the settlement of the 4-HBMP group increased by 25% to 33% over that of a single HBMP due to group effect.
机译:空心杆微桩(HBMP)组用于支撑大载荷作为大直径钻孔轴的另一种基础选择。在这种情况下,可能需要通过增加钻头直径(D-b)来增加微型桩的直径。本文通过实验和数值模拟研究了增大分贝和微桩间距对群桩性能的影响。对安装在沙地上的四组HBMP进行了现场负荷测试;每组由四个方形排列的微型桩组成。所有微型桩均采用相同尺寸的空心杆建造,D-h=51 mm;两组由钻头构成的微型桩组成,D-b=115mm,两组由钻头构成的微型桩组成,D-b=152mm。每组中的一组安装间距与微桩直径之比为S/D-b=3,另一组安装间距与微桩直径之比为S/D-b=5。此外,还开发并校准了全三维有限元模型(FEM),以模拟微型群桩的行为,并评估未加载至失效的群桩的失效荷载。结果表明,使用大直径钻头建造的微型群桩比使用小直径钻头建造的群桩具有更高的刚度和承载能力,这证实了使用较大钻头的有效性。此外,发现所有组在工作负荷和极限承载力下的组效率比值接近统一。从这项研究中获得的灌浆微型桩的极限表面摩擦值高于美国联邦公路管理局对中密至极密砂的建议值。研究还发现,由于群体效应,4-HBMP组的沉降量比单一HBMP组增加了25%至33%。

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