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首页> 外文期刊>Advances in civil engineering >Explicit Form of Exact Analytical Solution for Calculating Ground Displacement and Stress Induced by Shallow Tunneling and Its Application
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Explicit Form of Exact Analytical Solution for Calculating Ground Displacement and Stress Induced by Shallow Tunneling and Its Application

机译:计算浅埋隧道引起的地面位移和应力的精确解析解的显式形式及其应用

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摘要

In urban environment, it is often unavoidable for shallow tunnels to be constructed adjacent to existing pile foundations. To obtain the ground displacements and stresses induced by shallow tunneling and existing pile foundation loads, the key procedure involves superimposing the analytical solution for shallow tunneling in green-field with the analytical solution for existing structure loads. In green-field, the complex variable method provides exact analytical solutions of ground displacements and stresses caused by shallow tunneling. However, the exact analytical solutions are not directly expressed as explicit functions of the coordinates (x, y) in the physical plane (called implicit form of exact analytical solutions), whereas the displacements and stresses induced by existing structure loads are explicit functions of the coordinates (x, y) in the physical plane, which makes it difficult to superpose the displacements and stresses induced by existing structure loads. In this paper, explicit form of exact analytical solutions of displacements and stresses induced by shallow tunneling in green-field is obtained by using the inverse conformal transformation and the Cauchy-Riemann equations. Comparison with implicit form of exact analytical solutions shows that the explicit form of exact analytical solutions is intuitional and easily used by engineers, and moreover, the calculation amount is much smaller than that for the implicit form of exact analytical solutions. Then, an application involving superimposing the explicit form of exact analytical solutions with Mindlin's solution is implemented to analyze the secondary stress field and the related potential plastic zone caused by shallow tunneling adjacent to pile foundations. Moreover, the influences of pile foundation parameters on the ranges and shapes of the potential plastic zones induced by nearby tunneling are analyzed.
机译:在城市环境中,通常不可避免的是在现有桩基础附近建造浅隧道。为了获得浅埋隧道和现有桩基荷载引起的地面位移和应力,关键过程包括将绿地浅埋隧道的解析解与现有结构荷载的解析解相叠加。在绿地中,复杂变量法为浅埋隧道引起的地面位移和应力提供了精确的解析解。但是,精确的解析解并不能直接表示为物理平面中坐标(x,y)的显式函数(称为精确解析解的隐式形式),而现有结构载荷引起的位移和应力是应力的显式函数。坐标(x,y)在物理平面上,这使得难以叠加现有结构荷载引起的位移和应力。本文利用反保形变换和柯西-黎曼方程,得到了由浅埋隧道在绿地中引起的位移和应力的精确解析解的显式形式。与精确解析解的隐式形式的比较表明,精确解析解的显式形式是直觉的,易于工程师使用,此外,计算量比精确解析解的隐式形式小得多。然后,应用涉及将精确解析解的显式形式与Mindlin解叠加在一起的应用程序,以分析次应力场和桩基附近的浅埋隧道引起的潜在塑性区。此外,分析了桩基参数对附近隧道引起的潜在塑性区的范围和形状的影响。

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  • 来源
    《Advances in civil engineering》 |2019年第5期|5739123.1-5739123.13|共13页
  • 作者单位

    Tsinghua Univ Dept Civil Engn Beijing 100084 Peoples R China;

    Univ Calif Los Angeles Dept Civil & Environm Engn Los Angeles CA 90095 USA|Shenzhen Univ Underground Polis Acad Shenzhen 518060 Peoples R China;

    Beijing Municipal Construct Co Ltd Beijing 100048 Peoples R China;

    Beijing 4 Municipal Construct Engn Co Ltd Beijing 100176 Peoples R China;

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