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1.中交第三航务工程勘察设计院有限公司,上海 200032
2.上海市政工程设计研究总院(集团)有限公司,上海 200092
3.东南大学土木工程学院,江苏 南京 210096
Published:15 December 2021
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李亚,程泽坤,朱立锋.预制上筒⁃基础杯口嵌入型连接结构受力特性分析[J].防灾减灾工程学报,2021,41(06):1271-1278.
LI Ya,CHENG Zekun,ZHU Lifeng.Mechanical Analysis of Precast Upper Cylinder and Lower Foundation Structure with Embedded Cup Type Connection[J].Journal of Disaster Prevention and Mitigation Engineering,2021,41(06):1271-1278.
李亚,程泽坤,朱立锋.预制上筒⁃基础杯口嵌入型连接结构受力特性分析[J].防灾减灾工程学报,2021,41(06):1271-1278. DOI: 10.13409/j.cnki.jdpme.201907044.
LI Ya,CHENG Zekun,ZHU Lifeng.Mechanical Analysis of Precast Upper Cylinder and Lower Foundation Structure with Embedded Cup Type Connection[J].Journal of Disaster Prevention and Mitigation Engineering,2021,41(06):1271-1278. DOI: 10.13409/j.cnki.jdpme.201907044.
当前装配式结构和工业化建造是土木工程重点发展的方向,预制上筒⁃基础杯口嵌入型连接结构作为近海土木工程领域典型的装配式结构,具有基础性研究意义。采用刚性理论方法、有限单元法、弹性理论方法对该类型连接结构受力特性进行研究,推导相关理论计算公式,并基于工程计算实例进行对比分析。研究发现,若灌浆粘结可靠、杯口和上筒之间固接时,结构变形较小;若灌浆粘结失效,杯口和上筒之间发生摩擦滑移而产生较大位移,且上筒变位随杯口高度增加而减小,当杯口高度在3.0 m及以上时,变位数值较为合理。相对刚性理论计算公式,基于上筒变形形态、接触摩擦传力方式建立的简化弹性理论公式与有限单元法结果误差较小;其中杯口高度为2.0 m时,平均误差约10%,杯口高度为3.0 m、4.0 m时,平均误差降低为7%、6%左右,结果较为接近;计算结果验证了简化弹性理论公式的合理可行性。
At present, prefabricated structure and industrial construction are the key development directions in civil engineering. Precast upper cylinder and lower foundation structure with embedded cup type connection, as a typical prefabricated structure in the field of offshore civil engineering, has fundamental research value. Based on rigid theory, finite element method(FEM) and elastic theory, the mechanical characteristics of this type of connection structure are studied, and relevant theoretical calculation formulas are derived. It is found that if the grouting bond is reliable and the connection between the cup and the upper cylinder is fixed, the structural deformation is small. If the grouting bond fails, there will be friction slip between the cup and the upper cylinder, resulting in a large displacement, and the displacement of the upper cylinder decreases with the increase of
h
c
(height of the cup). When hc is not less than 3.0 m, the displacement value is relatively reasonable. Compared with the calculation formula by rigidity theory, the simplified elastic formula based on deformation pattern of the upper cylinder and the theory of contact friction gives close result to that of FEM, and the details are as follows: when the cup height is 2.0 m, the average error is about 10%; when the cup height is 3.0 m and 4.0 m, the average error reduces to about 7% and 6%. The results show that the simplified elastic formula is feasible.
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