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Lateral Load Response of a Reaction Column-Foundation System in Different Temperature Conditions

机译:反应柱 - 基础系统在不同温度条件下的横向载荷响应

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Temperatures below freezing experienced in several parts of the world increase strength and stiffness of soil, concrete and reinforcing steel. These changes can affect the lateral load behavior of deep foundations markedly. Large-scale outdoor lateral load tests were conducted during summer (at 23°C) and winter (-6°C and -10°C) on bridge column-drilled shaft foundation systems which were installed in glacial till soil classified as low plastic clay. The soil at the test site was characterized using laboratory tests performed at different temperatures and in-situ Cone Penetration Tests and Pressuremeter Tests. The column-foundation units were subjected to cyclic lateral loads and the force-displacement response and strain profile along the length of these units were monitored. This paper summarizes the measured lateral load responses of the reaction column-foundation system.
机译:在世界上几个部分地区经历了以下冻结的温度,提高了土壤,混凝土和加强钢的强度和刚度。这些变化可以显着影响深度基础的横向载荷行为。在夏季(在23°C)和冬季(-6°C和-10°C)上进行大规模的室外横向载荷试验在桥柱钻轴基础系统上安装在冰川直至土地上被归类为低塑料粘土。使用在不同温度和原位锥形渗透试验和压尿器测试中进行的实验室测试表征测试部位的土壤。监测柱基础单元的循环横向载荷,并且监测沿着这些单元的长度的力 - 位移响应和应变曲线。本文总结了反应塔基基础系统的测量横向载荷响应。

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