taptap下载安装安卓学报 ›› 2024, Vol. 42 ›› Issue (4): 77-83.

• 未来机场及智能装备 • 上一篇    下一篇

机场水泥混凝土道面弯沉的温度翘曲影响修正

马正好 1
,刘海伦 1
,侯天新 2
  

  1. (1. 民航专业工程质量监督总站华东地区监督站,上海 200335;
    2. 同济大学民航飞行区设施耐久与运行安全重点实验室,上海 201804)
  • 收稿日期:2023-10-19 修回日期:2024-05-29 出版日期:2024-12-19 发布日期:2024-12-21
  • 作者简介:马正好(1991—)男,安徽芜湖人,高级工程师,硕士,研究方向为道路与机场工程.
  • 基金资助:
    上海市自然科学基金项目(23ZR1466300)

Modification of temperature-induced curling impact on the deflection of airport cement concrete pavement

MA Zhenghao1, LIU Hailun1 , HOU Tianxin   

  1. (1. The East China Civil Aviation Professional Engineering Quality Supervision Station, Shanghai 200335, China; 2. Key Laboratory of
    Infrastructure Durability and Operation Safety in Airfield of CAAC, Tongji University, Shanghai 201804, China)
  • Received:2023-10-19 Revised:2024-05-29 Online:2024-12-19 Published:2024-12-21

摘要: 为降低温度翘曲对机场水泥混凝土道面弯沉测试的影响,提升机场道面结构性能评价精度,本文提出一
种基于道面弯沉的温度翘曲影响修正方法。 首先,推导出负温度梯度条件下道面有效弯沉为现场实测弯
沉减去相应的温度翘曲量;其次,基于数值仿真和回归计算,分析出道面板边和板角位置的温度翘曲量与
道面板厚度、水泥混凝土弯拉弹性模量呈线性正相关,且仅受低水平地基反应模量和接缝传荷能力的一
定影响,进而建立了以道面板厚度、水泥混凝土弯拉弹性模量为修正参数的道面温度翘曲量计算公式;最
后,通过现场测试对本文所提修正方法进行验证,结果表明:以零温度梯度下道面弯沉为标准,道面板边
弯沉修正误差小于 10.0%,板角弯沉修正误差小于 6.0%。 本文提出的基于道面弯沉的温度翘曲影响修正
方法可满足一般机场道面结构性能评价需要。

关键词: 机场工程, 水泥混凝土道面, 温度翘曲, 弯沉

Abstract: A modification method of temperature-induced curling impact based on pavement deflection is proposed in order to
reduce the impact of temperature-induced curling on deflection test of airport cement concrete pavement and im-
prove the accuracy of structural performance evaluation of pavement. Firstly, the effective deflection of the pave-
ment under negative temperature gradient is derived as the difference between the field-measured deflection and
the corresponding temperature-induced curling. Secondly, based on numerical simulation and regression calcula-
tion, it is analyzed that the temperature-induced curling at the edge as well as corner of the pavement panel are lin-
early positively correlated with the thickness of the pavement panel and the flexural and tensile elastic modulus of
the cement concrete, and are only slightly influenced by the low-level subgrade reaction modulus and joint load
transfer capacity. Accordingly, a calculation formula for pavement temperature-induced curling is established with
the thickness of the pavement panel and the flexural and tensile elastic modulus of the cement concrete as correc-
tion parameters. Finally, the modification method proposed in this article is verified through field testing. The re-
sults show that the correction error of deflection is less than 10.0% at edge and less than 6.0% at corner of the pave-
ment panel based on the standard of pavement deflection under zero temperature gradient. The proposed modifica-
tion method of temperature-induced curling impact based on pavement deflection can satisfy the requirement for
general structural performance evaluation of airport pavement.

Key words: airport engineering, cement concrete pavement, temperature-induced curling, deflection

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