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A Study on Distribution Measurement and Mechanism of Deformation due to Water Loss of Overburden Layer in Vertical Shaft

机译:竖井覆土层失水变形分布规律及其变形机理研究。

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摘要

Based on FBG fiber Bragg grating technology and BOTDA distributed optical fiber sensing technology, this study uses fine sand to simulate overburden layer in vertical shaft model equipment. It studies the placing technique and test method for optical fiber sensors in the overburden layer, combined with MODFLOW software to simulate the change of the water head value when the overburden layer is losing water, and obtains the deformation features of overburden layer. The results show, at the beginning of water loss, the vertical deformation increases due to larger hydraulic pressure drop, while the deformation decreases gradually and tends to be stable with the hydraulic pressure drop reducing. The circumferential deformation is closely related to such factors as the distance between each drainage outlet, the variations of water head value, and the method of drainage. The monitoring result based on optical fiber sensing technology is consistent with the characteristics of water loss in overburden layer simulated by MODFLOW software, which shows that the optical fiber sensing technology applied to monitor shaft overburden layer is feasible.
机译:基于FBG光纤布拉格光栅技术和BOTDA分布式光纤传感技术,本研究利用细砂在竖井模型设备中模拟了覆盖层。研究了覆盖层中光纤传感器的放置技术和测试方法,结合MODFLOW软件模拟了覆盖层失水时水头值的变化,获得了覆盖层的变形特征。结果表明,在失水开始时,竖向变形由于较大的水压降而增大,而变形逐渐减小并随着水压降的减小趋于稳定。周向变形与每个排水口之间的距离,水头值的变化和排水方法等因素密切相关。基于光纤传感技术的监测结果与MODFLOW软件模拟的覆盖层失水特征相吻合,表明将光纤传感技术应用于竖井覆盖层的监测是可行的。

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