极端温度变化条件下加筋土挡墙内部温度场数值分析
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1.华中科技大学 土木与水利工程学院;2.新疆建筑科学研究院(有限责任公司);3.河北工业大学 土木与交通学院

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中建新疆建工集团(有限公司)课题(65000022859700210197)


Inner temperature field numerical analysis of reinforced-soil retaining wall under significant temperature fluctuation
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Affiliation:

1.School of Civil and Hydraulic Engineering, Huazhong University of Science and Technology;2.Xinjiang Institute of Architectural Sciences (Limited Liability Company);3.School of Civil and Transportation Engineering, Hebei University of Technology

Fund Project:

CSCEC Xinjiang Construction and Engineering Group Co., LTD (No. 65000022859700210197)

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    摘要:

    为了研究极端温度变化条件下加筋土挡墙内部温度场变化特性及规律,本文以乌鲁木齐市某加筋土挡墙工程为背景,基于Plaxis有限元模型,在考虑太阳辐射边界温度效应的基础上,开展了加筋土挡墙内部温度场变化特性研究。研究结果表明:加筋土挡墙内部温度变化与外部环境温度起伏关系密切,其内部等温线近似于双曲线;挡墙内部距面板3-4m、墙顶结构2.0m的区域为温度敏感区,随着填料热物理参数的提高,墙内温度敏感区水平宽度也随之增加;加筋土挡墙内部的平均温度梯度?TV变化量主要取决于外部温度的变化速率,但具有较高热物理参数的填料可以有效减小墙内平均温度梯度?TV;随着填料饱和度的增加,挡墙内部最大冻深线深度增大,当填料饱和度由0增长至0.2时,挡墙内部最大冻深增加幅度最大。研究结果为后续季冻区加筋土挡墙长期稳定性分析提供参考依据。

    Abstract:

    To investiage the changing regularity of temperature field of geogrid-reinforced soil (GRS) retaining wall under the significant temperature fluctuation, this study focused on a GRS retaining wall in Urumqi as the engineering context. Finite element models were constructed and employed to analyze the inner temperature distribution characteristics of the GRS retaining wall, taking into account the influence of solar radiation. The findings indicate a strong correlation between the inner temperature field of the GRS retaining wall and variations in environmental temperature, with the isotherm closely resembling a hyperbolic shape. Specifically, the temperature field within approximately 3-4.0 m behind the facing panels and about 2.0 m below the top surface of the GRS retaining wall can be classified as temperature-sensitive regions. Furthermore, the width of these temperature-sensitive regions expands in proportion to the thermophysical parameters. The utilization of filling material possessing enhanced thermophysical properties can effectively alleviate the average temperature gradient ?TV, however, the magnitude of the average temperature gradient ?TV predominantly depends on the rate of fluctuation in the external temperature. The maximum depths of frost exhibit an increase with the saturation of filling materials, with the most significant increment observed during the transition from a saturation level of 0 to 0.2. Furthermore, the findings of this study will serve as a significant point of reference for future investigations into the enduring stability of GRS retaining walls.

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  • 收稿日期:2023-09-28
  • 最后修改日期:2023-12-08
  • 录用日期:2023-12-26
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