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Analytical solution to steady-state temperature field with typical freezing tube layout employed in freeze-sealing pipe roof method

机译:冻结管顶板法采用典型冻结管布置的稳态温度场解析解

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摘要

Freeze-sealing pipe roof (FSPR) is an emerging auxiliary method in trenchless technology of underground engineering, which combines the advantages of Pipe-Roof Method and Artificial Ground Freezing method together. Based on practical engineering, a new typical freezing model of FSPR method with freezing tubes arranged inside jacking pipes is proposed in this paper, and then analytical solution to steady-state temperature field is obtained by transforming circular boundary condition to linear boundary condition with conformal mapping and superposition method. A comparison between the analytical results and numerical thermal results shows that the analytical solution is sufficiently precise for practical use. Temperature distribution of three characteristic sections gives an analytical validation for waterproofing performance and the results of field test bring a practical confirmation for the freezing effect of FSPR method. This paper enriches the theoretical research in steady-state temperature field of AGF and provide a reliable reference basis for FSPR design in future applications.
机译:冻结密封管屋面(FSPR)是地下工程非开挖技术中一种新兴的辅助方法,它结合了管屋顶法和人工地面冻结法的优点。在实际工程的基础上,提出了一种新的典型FSPR法冻结模型,该方法将冻结管布置在顶管内,然后利用保角映射将圆形边界条件转换为线性边界条件,从而得到稳态温度场的解析解。和叠加方法。分析结果和数值热结果之间的比较表明,该分析解决方案对于实际使用而言足够精确。三个特征部分的温度分布提供了防水性能的分析验证,现场测试的结果为FSPR方法的冻结效果提供了实用的确认。本文丰富了AGF稳态温度场的理论研究,为FSPR在未来的应用中设计提供了可靠的参考依据。

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