水运工程2024,Issue(4) :173-182.

基于混凝土水化热的灌注桩成桩质量评价方法及应用

Quality evaluation method of cast-in-place pile based on heat of concrete hydration and its application

吕述晖 苏世定 张博
水运工程2024,Issue(4) :173-182.

基于混凝土水化热的灌注桩成桩质量评价方法及应用

Quality evaluation method of cast-in-place pile based on heat of concrete hydration and its application

吕述晖 1苏世定 1张博1
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作者信息

  • 1. 中交四航工程研究院有限公司, 广东 广州 510230;中交集团交通基础工程环保与安全重点实验室, 广东 广州 510230;南方海洋科学与工程广东省实验室 (珠海), 广东 珠海 519082
  • 折叠

摘要

针对如何基于灌注桩水化热温度场准确评价桩身质量的问题,利用与桩身横截面中心径向距离大于 0.5 倍桩半径范围内,混凝土水化热温度随径向距离的变化近似线性的特征,建立根据钢筋笼上对称两测点的水化热温度计算钢筋笼偏位的方法.结合缺陷灌注桩的水化热仿真分析,系统分析缺陷几何特征和热工参数变化对灌注桩水化热温度场的影响规律,提出根据沿钢筋笼主筋布置水化热温度测点获得的温度-深度曲线特征,判断缺陷存在并分析缺陷空间分布位置的方法.结合现场试验及与低应变、跨孔超声波检测结果的对比,验证了该方法的可行性.

Abstract

Aiming at the problem of evaluating the quality of the pile body accurately based on the temperature field of the hydration heat of the cast-in-place pile,we use the characteristics of the concrete hydration heat temperature changing approximately linear with radial distance(from the center of the pile cross-section)within the range of the radial distance greater than 0.5 times the pile radius,and build the method for calculating the deviation of the reinforcement cage based on the temperature of two symmetrical measuring points on the reinforcement cage.Combining with the simulation analysis of the hydration heat of the defective pile,we systematically analyze the influence of the geometric characteristics of the defect and the change of thermal parameters on the temperature field,and propose the method for judging the presence of defects and analyzing their spatial distribution position based on the characteristics of the temperature-depth curve obtained from temperature measurement points along the main reinforcements.Combining field tests and comparison with low-strain and cross-hole ultrasonic testing results,we verify the feasibility of the method.

关键词

灌注桩/水化热/桩身缺陷/钢筋笼偏位

Key words

cast-in-place pile/heat of hydration/pile defect/deviation of reinforcing cage

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基金项目

南方海洋科学与工程广东省实验室(珠海)河口海岸与岛礁工程创新团队建设项目(311020009)

出版年

2024
水运工程
中交水运规划设计院有限公司

水运工程

CSTPCD
影响因子:0.428
ISSN:1002-4972
参考文献量10
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