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Loss displacement estimation of Azad pumped storage powerhouse cavern using combination of numerical modeling and instrumentation results

机译:使用数值建模和仪表结果结合的AZAD泵送储存潮流洞穴的损失位移估计

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摘要

Instrumentation and monitoring are common methods to control the stability of large underground spaces. During monitoring underground excavations, it is usually impossible for the instrument to fully record the displacements taking place ahead of the tunnel. This occurs due to the fact that there is always a distance between the instrument and the excavation face, so some displacement are lost before the installation of the instruments. In this research, efforts have been made to estimate the loss displacement of the Azad Pumped Storage Powerhouse cavern in Iran, using combination of numerical method and instrumentation results. For this purpose, according to the excavated sequence (pilot tunnel, downstream slashing, and upstream slashing) the roof of the powerhouse cavern was modeled, using two-dimensional finite element software, verified by the results obtained from extensometer installed in the cavern's roof. The comparison of modeling and monitoring results indicates that the displacement occurrence recorded via the instrument is less than the modeling values. The most obvious reason is the displacement loss and impossibility in recording all displacements via the instrumentation. Then, employing the results of the adjacent instruments and displacements recorded by the cavern roof's instrument and utilizing a combination of modeling results, the amount of loss displacements in the cavern's roof was evaluated to be 40% of the total displacements. Afterward, employing analytical methods and fitting the curve on instrument's results, the outcomes indicate that the longitudinal deformation profiles obtained by Hoek equation has the best fit, confirming the 40% of the displacements that occurred before the installation of the instrument.
机译:仪器监测是控制大地下空间稳定性的常用方法。在监测地下挖掘过程中,仪器通常不可能完全记录在隧道之前发生的位移。这是由于仪器和挖掘面之间总有一定的距离,因此在安装仪器之前丢失一些位移。在这项研究中,使用数值方法和仪表结果的组合,已经努力估算伊朗的Azad泵送储存厂家洞穴的损失位移。为此目的,根据挖掘序列(导频隧道,下游削减和上游削减),使用二维有限元件软件,通过安装在洞穴屋顶中的扩展仪所获得的结果来进行建模的电力洞穴的屋顶。建模和监测结果的比较表明,经由仪器记录的位移发生量小于建模值。最明显的原因是通过仪器记录所有位移的位移损失和不可能性。然后,采用洞穴屋顶仪器记录的相邻仪器和位移的结果并利用建模结果的组合,洞穴屋顶的损失量被评估为总位移的40%。之后,采用分析方法并拟合仪器的结果曲线,结果表明,Hoek方程获得的纵向变形型材具有最佳拟合,确认在安装仪器之前发生的40%的位移。

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