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热-力耦合作用下能量桩单桩分析方法及工作特性研究
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Research on Single Pile Analysis Method and Working Performance of Energy Pile under Thermo-mechanical Coupling
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    摘要:

    能量桩在正常服役过程受热-力耦合作用,其荷载传递特征将发生改变,但现有能量桩承载特性的理论方法尚不够完善.为研究热-力耦合作用下能量桩单桩承载特性,考虑温度对荷载传递函数的影响,提出基于荷载传递法和能量平衡原理的热-力耦合作用下能量桩单桩分析方法,通过迭代求解得到任意荷载-温度组合作用下桩身内力和位移,将计算结果与试验结果进行对比,结果较吻合.研究结果表明:温度作用会影响桩身轴力和桩侧摩阻力变化规律.对不同桩顶荷载水平下的桩顶沉降值进行分析,在荷载-升温/降温工况下,当桩顶荷载水平较低时(≤25%Pu,Pu为极限荷载),温度变化对桩顶沉降幅度影响显著,桩顶沉降幅度可达到55%(25%Pu);尤其荷载-降温工况下,当桩顶荷载水平超过75%Pu时,桩顶沉降量临近极限值,此时需特别注意桩基承载性能.

    Abstract:

    Energy piles are subject to a combination of mechanical and thermal loads during the normal service process, and their load transfer characteristics will be changed, but the existing theoretical methods for the bearing characteristics of energy piles are not yet complete enough. To study the working characteristics of single energy piles under coupled thermo-mechanical loading, the analysis method of single energy piles under coupled thermo-mechanical loading based on the load transfer method and energy balance principle is proposed by considering the effect of temperature on the load transfer function. The research results show that the thermal load affects the axial force and shaft resistance change laws, and the pile-top settlement values under different pile-top load levels are analyzed. Under the mechanical load and heating/cooling condition, when the pile-top load level is low (≤25%Pu, wherePu is the ultimate load), the effect of temperature change on the pile-top settlement amplitude is significant, and the pile top settlement amplitude can reach 55% (25%Pu); especially in the mechanical load and cooling condition, when the pile-top load level exceeds 75%Pu, the pile-top settlement value is close to the limit value, and special attention should be paid to the bearing performance of the pile foundation at this time.

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江杰 ,陈秋怡 ,欧孝夺 ?,陈朝棋 ,张鹏 .热-力耦合作用下能量桩单桩分析方法及工作特性研究[J].湖南大学学报:自然科学版,2023,(7):211~220

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  • 在线发布日期: 2023-07-31
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