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The Influence of Longitudinal Force on the Internal Force Distribution and Deformation Coordination Mechanism for Segment Lining

机译:纵向力对段衬里内部力分布和变形配制机理的影响

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A series of local prototype tests are conducted on the Sutong GIL (Gas-Insulated Line) and Shiziyang Tunnel. These tests investigate the redistribution law of segment deformation and the bending moment during construction. The results reveal that the transfer ability of deformation and the bending moment improve with an increase in the longitudinal force. Stage characteristics are observed for the effect of the longitudinal force on the opening of the circumferential joints. Segments are fully contacted for the circumferential joints when the joint opening is not observed. The frictions between the segments are the key factors for the bending moment and segment deformation control. The opening of the circumferential joint with an increase in the joint opening then becomes the primary control factor. The transfer ability becomes stable when the load continues increasing after mortise and tenon contact. Better transfer ability occurs with a general segment with four pairs of mortises and tenons. This was presented as a smaller value of an increasing rate and the stable magnitude of the joint opening. From the perspective of practical engineering, mortises and tenons can be added to the vault to increase the load and deformation transfer ability of the general segment after the loss of the longitudinal force.
机译:一系列局部原型测试是在Sutong Gil(气体绝缘线)和施氏阳隧道上进行的。这些测试研究了施工期间分段变形和弯矩的再分配规律。结果表明,变形的转移能力和弯矩随着纵向力的增加而改善。观察到阶段特性,用于纵向力对圆周关节开口的影响。当未观察到接合开口时,段完全接触圆周接头。段之间的摩擦是弯矩和段变形控制的关键因素。圆周接头的开口随着接头开口的增加而变为初级控制因子。当负载在榫眼和榫接触后继续增加时,转移能力变得稳定。具有四对榫眼和榫头的普通段发生更好的转移能力。这被呈现为增加速率的较小值和关节开口的稳定幅度。从实际工程的角度来看,榫眼和榫头可以加入拱顶,以增加纵向力损失后通用段的负荷和变形传递能力。

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