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溶洞高度影响嵌岩桩轴力传递及桩侧超载响应试验
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Test on Influence Law of Karst Cave Height on Axial Force Transfer and Lateral Overload Response of Rock-socketed Pile
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    岩溶区基桩常刺穿不同高度的溶洞,承受桩顶竖向荷载或者单侧超载,但荷载传 递机制尚不十分清楚. 针对此状况,设计杠杆加载装置,测试刺穿不同高度溶洞桩顶部加载时 的桩身应变及桩顶自由时单侧超载下桩身应变、土压力和侧移,获得穿洞桩的轴力传递规律 和单侧超载响应.结果表明:1)桩顶竖向荷载作用下,基桩从土层或溶洞进入岩层前,轴力-深 度曲线存在界面效应,即土层或溶洞底部的基桩轴力增长,增长率随荷载增大而增大. 溶洞内 的桩身轴力-深度曲线呈“凹缩”状,其凹缩幅度随桩顶荷载和溶洞高度增大而增大. 2)单侧超 载作用下,桩身侧移、土压力、弹性抗力和弯矩均随超载和溶洞高度增大而增大 . 桩顶压力为 零时,桩顶侧移最大,随深度增大而减小 . 土压力和弹性抗力在土层段沿深度先增大后减小 . 嵌岩桩和穿过溶洞桩体的桩身弯矩先随深度增大而增大,在土层底部最大,进入岩层和溶洞 后减小. 3)基桩垂直和水平承载力均随桩身刺穿的溶洞高度增大而降低. 冲击钻进形成的洞 内桩段不易发生受压或弯曲破坏 . 单侧超载作用下,穿洞桩最可能绕土、岩界面转动,在土层 底部发生弯曲破坏 . 工程中,建议加大上部土层段桩径和配筋率,将扩径段嵌岩,以提高基桩 水平承载力.

    Abstract:

    Pile in karst areas often impales the caves with different height and often bears the vertical load on pile top or unilateral overload,but worst of all,the working mechanism of the pile impaling cave is not well under? stood. Due to this problem,the lever loading device was designed,the strain of pile when impaling the caves of different height with applied vertical load on the top of the pile was tested,the strain of pile body,the earth pressure and horizontal displacement under unilateral overload were tested when the top of the pile is free,and the transfer law of axial force and the response under unilateral overload of pile impaling the cave of different height were ob? tained. The results show that:1)When the vertical load is applied on the top of the pile bears,before the pile enters the rock layer from the soil layer or the cave,the axial force-depth curve is of obvious interface effect,that is the pile′s axial force at the bottom of the soil layer or the cave grows,and the growth rate increases with the increase of load. The axial force-depth curve of the cave is "concave",its magnitude of the concave increases with the increase of the load on the top of pile and the height of the cave. 2)When unilateral overload is applied on the pile,all of the horizontal displacement of pile,earth pressure,elastic resistance and bending moment increases with the increase of overload and the height of cave. When the pressure at the top of the pile is zero,the lateral displacement of the pile decreases with the increasing depth,and it is maximal at the top of the pile. Both of the earth pressure and elastic re? sistance increase first and then decrease along the depth in the soil section. The bending moment of the embedded pile and pile impaling cave increase with depth,and it is maximal at the bottom of the soil layer. But it decreases af? ter entering the rock layer and cave. 3)Both of the vertical and horizontal bearing capacity of pile decreases with the increase of the height of the cave impaled by the pile. The pile section inside the cave formed by percussion drilling is not easily damaged by vertical compression and bend. Under the unilateral overload,the pile impaling cave is most likely to rotate around the soil-rock interface and bends at the bottom of the soil layer. In engineering,it is rec? ommended to increase the diameter and reinforcement rate of the upper pile in the soil layer and to embed the ex? panded section to an enough depth so as to improve the horizontal bearing capacity of the pile impaling cave.

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周德泉 ,张杨龙 ,曹勇 ,张红尘 ,谢瑞庭 ,杜鹏 .溶洞高度影响嵌岩桩轴力传递及桩侧超载响应试验[J].湖南大学学报:自然科学版,2022,49(7):83~93

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  • 在线发布日期: 2022-08-18
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