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Predicted versus actual rock mass conditions: A review of four tunnel projects in Nepal Himalaya

机译:预测与实际岩体状况:尼泊尔喜马拉雅山的四个隧道项目回顾

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摘要

The Himalayan region possesses enormous potential for hydropower development. However, there exists great challenge for the successful underground excavation due to complex geological set up of the region. It is generally accepted that the cost and time are of main concerns in any tunnelling project as these two factors influence greatly on the economic viability of the hydropower projects. Consequently, the accuracy of predicted geological conditions during planning phase plays an important role during its implementation. The degree of accuracy in predicting, evaluating, and interpreting the quality of rock mass along the tunnel alignment is thus a key for the successful completion of any hydropower project. This paper assesses and compares the predicted and actual rock mass conditions of the four recently constructed hydro-tunnels in Nepal Himalaya. Further, an evaluation is made on the extent of pre-construction phase engineering geological investigations. The effect on the overall cost and construction time caused by the variations in rock mass quality of these tunnel projects are discussed. A recommendation is given on the minimum level of geological investigation that may help improve the predictability of geological conditions and reduce the discrepancy between predicted and actual rock mass conditions to an acceptable level.
机译:喜马拉雅地区具有巨大的水电开发潜力。然而,由于该地区地质条件复杂,成功进行地下挖掘存在巨大挑战。人们普遍认为,成本和时间是任何隧道工程的主要考虑因素,因为这两个因素极大地影响了水电工程的经济可行性。因此,计划阶段预测地质条件的准确性在实施过程中起着重要作用。因此,预测,评估和解释沿隧道定线的岩体质量的准确性是成功完成任何水电项目的关键。本文评估并比较了尼泊尔喜马拉雅山最近修建的四条水工隧道的预测和实际岩体状况。此外,对施工前阶段工程地质调查的范围进行了评估。讨论了这些隧道工程的岩体质量变化对总体成本和施工时间的影响。提出了关于最低地质调查水平的建议,这可能有助于提高地质条件的可预测性,并将预测岩体条件与实际岩体条件之间的差异降低到可接受的水平。

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