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首页> 外文期刊>Tunnelling and underground space technology >Development of swing method with sequential data assimilation (SDA-SWING) and its application to groundwater problems in real tunnel construction
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Development of swing method with sequential data assimilation (SDA-SWING) and its application to groundwater problems in real tunnel construction

机译:顺序数据同化(SDA-SWING)摇摆法的发展及其在实际隧道施工中的地下水问题中的应用

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摘要

Tunnel excavation in Japan is beset by difficulties related to complicated geology and groundwater. Con trolling the groundwater inflow to the tunnel during excavation is a challenging issue for both tunnel construction and for environmental assessment. The SWING (System for Water INformation of Ground) method was developed to enable predictions regarding groundwater inflow to the tunnel and also to allow evaluation of the impact of excavation on the surrounding groundwater environment. The SWING method is based on the closed-form solution of Dupuit quasi-uniform flow and can follow the tunnel excavation process by reconstructing the hydraulic conductivity fields using data obtained at construc tion sites. Herein, the original SWING system was modified by the Ensemble Kalman Filter (EnKF) in order to automatically optimize the hydraulic parameters. The newly developed SWING method, SDA-SWING (Sequential Data Assimilation-SWING), was applied to two different tunnel construction sites in Japan and its applicability was discussed by comparison with the results obtained from the original SWING method. The effects of initial hydraulic conductivity and the frequency of data acquisition on the pre dicted results were also investigated using the SDA-SWING method. The SDA-SWING method can auto matically optimize the hydraulic parameters using EnKF algorism without the need for highly skilled personnel and thus leads to a significant reduction in working times. The estimation of groundwater inflow by the SDA-SWING method generally agrees well with results obtained by the original SWING method and also with observations at the tunnel site.
机译:日本的隧道开挖受地质和地下水复杂问题的困扰。在挖掘过程中控制地下水流入隧道对于隧道建设和环境评估都是一个具有挑战性的问题。开发了SWING(地面水信息系统)方法,以便能够预测地下水流入隧道的情况,还可以评估开挖对周围地下水环境的影响。 SWING方法基于Dupuit准均匀流的闭合形式解,并且可以通过使用在施工现场获得的数据来重建水力传导率场,从而遵循隧道开挖过程。在这里,原始的SWING系统通过Ensemble Kalman过滤器(EnKF)进行了修改,以便自动优化水力参数。新开发的SWING方法SDA-SWING(顺序数据同化SWING)被应用于日本的两个不同的隧道施工现场,并与原始SWING方法的结果进行了比较,讨论了其适用性。还使用SDA-SWING方法研究了初始导水率和数据采集频率对预测结果的影响。 SDA-SWING方法可以使用EnKF算法自动优化液压参数,而无需熟练的技术人员,因此可以大大减少工作时间。通过SDA-SWING方法估算的地下水流入量通常与原始SWING方法获得的结果以及隧道现场的观测结果非常吻合。

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