首页> 外文期刊>International Journal of Mining and Geo-Engineering >Optimization of Conformal Mapping Functions used in Developing Closed-Form Solutions for Underground Structures with Conventional cross Sections
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Optimization of Conformal Mapping Functions used in Developing Closed-Form Solutions for Underground Structures with Conventional cross Sections

机译:用于开发具有常规横截面的地下结构的封闭式解决方案的共形映射函数的优化

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Elastic solutions applicable to single underground openings usually suffer from geometry related simplification. Most tunnel shapes possess two axes of symmetry while a wide range of geometries used in tunneling practice involve only one symmetry axis. D-shape or horse-shoe shape tunnels and others with arched roof and floor are examples of the later category (one symmetry axis). In the present paper, with the use of conformal mapping, two methods were developed to determine the appropriate mapping functions on which an analytical elastic solution for a tunnel with one vertical axis of symmetry is based. These conformal mapping functions turn complicated geometries into a unit circle for the sake of simplification. These two approaches were introduced into a computer program used for an arbitrary tunnel cross section. Results showed that the second approach has more accuracy and is able to produce any shape, since it uses a nonlinear structure in its constitutive equations. Besides, the values for different coefficients have been presented for a variety of tunnel geometry curvature, as well as acceptable variation for the coefficients to represent tunnels with conventional shapes.
机译:适用于单个地下开口的弹性解决方案通常遭受与几何相关的简化。大多数隧道形状具有两个对称轴,而在隧道实践中使用的多种几何形状仅涉及一个对称轴。 D形或马蹄形隧道以及其他具有拱形屋顶和地板的隧道是后一类(一个对称轴)的示例。在本文中,利用共形映射,开发了两种方法来确定适当的映射函数,基于该函数,一个具有一个垂直对称轴的隧道的解析弹性解将基于此。为了简化起见,这些共形映射函数将复杂的几何图形转换为一个单位圆。将这两种方法引入到用于任意隧道横截面的计算机程序中。结果表明,第二种方法具有更高的准确性,并且能够生成任何形状,因为它在本构方程中使用了非线性结构。此外,已经针对各种隧道几何曲率提出了不同系数的值,以及系数的可接受变化,以代表具有常规形状的隧道。

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