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Excavation cycle times recorded during sinking of a deep shaft in crystalline rock - A case example at Ventilation Shaft of Mizunami URL, Japan

机译:结晶岩深井下沉时的开挖周期时间-以日本水浪URL的通风井为例

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Realistic and properly planned excavation cycle times developed prior to tunnel construction are an important issue for dependable project management, including cost estimation and time saving. Existing design studies, conducted to estimate the total cost for geological disposal, have been limited to estimates of approximate construction total time schedules. There were no case studies which compared the detailed excavation cycle time used in design studies with the actual results from an excavation taking into account each excavation cycle operation and task. In this paper, analyses of actual cycle time recorded during the sinking of the Ventilation Shaft of the Mizunami Underground Research Laboratory and comparison with the planned cycle time developed in the design stage are intended for an evaluation of the baseline work plan and schedule and for optimization of the calculations for application to shaft construction in any future repository in Japan. Actual times to perform three operations, drill and blast, muck removal and concrete lining emplacement were much larger than expected and represent the largest portion of the total excavation cycle time and had the largest impact on the efficiency of the excavation cycles and schedules. Operating at increasingly greater depths and excavating harder, more competent rock combined to significantly affect the shaft sinking speed. The underlying reasons for increases in actual times for the excavation cycle operations compared to their design estimates fall into three categories: constraints on construction; to ensure safety; and maintenance. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在隧道施工之前制定切实可行的规划开挖周期时间是可靠项目管理的重要问题,包括成本估算和节省时间。现有的设计研究旨在估算地质处置的总成本,但仅限于估算近似的施工总时间表。没有案例研究将设计研究中使用的详细挖掘周期时间与挖掘的实际结果进行了比较,并考虑了每个挖掘周期的操作和任务。在本文中,对水波地下研究室通风井下沉期间记录的实际周期时间进行分析,并与设计阶段制定的计划周期时间进行比较,旨在评估基准工作计划和时间表并进行优化。计算结果可应用于日本未来任何仓库中的竖井建设。进行钻孔,爆破,除泥和衬砌混凝土这三项操作的实际时间比预期的要长得多,占开挖总时间的最大部分,并且对开挖效率和进度的影响最大。在越来越大的深度进行作业,并挖掘更坚硬,更胜任的岩石,从而显着影响竖井下沉速度。与设计估算相比,挖掘周期作业实际时间增加的根本原因可分为三类:施工约束;确保安全;和维护。 (C)2015 Elsevier Ltd.保留所有权利。

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