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The support characteristic curve for blocked steel sets in the convergence-confinement method of tunnel support design

机译:隧道支护设计收敛约束法中封闭钢结构支护特性曲线

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Construction of support characteristic curves is an important aspect of the implementation of the convergence confinement method of tunnel support design. This paper presents a detailed analysis of the equations required to construct the support characteristic curve of a combined support system consisting of closed circular steel sets linked to the periphery of the tunnel by equally spaced prismatic wood blocks. This particular problem has been treated in the classical literature of underground excavation design in rock, although without providing details of the origin or validity of the equations. This paper fills this gap, providing the derivation and validation of all the equations required to construct the support characteristic curve for the combined support system. The paper shows that both the stiffness and maximum load that the combined support system can take increases as the angle between equally spaced wood blocks is decreased (or the number of blocks for the steel section is increased). In the limit, when the angle between wood blocks is assumed to be zero, the paper shows that the classical equations for construction of support characteristic curve for a steel set subjected to uniform radial load are recovered. The paper presents also a practical example illustrating the application of all equations needed to construct the support characteristic curve for the combined support system.
机译:支护特征曲线的构建是隧道支护设计收敛约束方法实施的重要方面。本文对构成组合支撑系统的支撑特性曲线所需的方程式进行了详细分析,该组合支撑系统由闭合的圆形钢结构组成,这些闭合的圆形钢结构通过等间距的棱柱形木块连接到隧道的外围。尽管没有提供方程式的起源或有效性的详细信息,但在岩石地下挖掘设计的古典文献中已经解决了这个特殊问题。本文填补了这一空白,为构造组合支撑系统的支撑特性曲线所需的所有方程式提供了推导和验证。本文显示,随着等距木块之间的角度减小(或钢截面的块数增加),组合支撑系统可承受的刚度和最大载荷都会增加。在极限条件下,假设木块之间的夹角为零,则表明恢复了承受均匀径向载荷的钢结构支撑特性曲线的经典方程式。本文还提供了一个实际示例,说明了为组合支撑系统构建支撑特性曲线所需的所有方程式的应用。

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