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Engineering Geological and Geotechnical Approaches for the Construction of Powerhouse Cavern of Tehri Pumped Storage Plant (1000 MW) - A Case Study

机译:特里抽水蓄能电站(1000 MW)厂房洞室的工程地质和岩土方法-案例研究

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Construction of underground Cavern in the Himalayan region is full of challenges and uncertainties. Experience has shown that construction in Himalayan regions requires good understanding of geology, adequate site investigations, proper design and selection of suitable construction methodology and technology. The most commonly encountered geological problems during excavation of underground structure in Hydroelectric Projects are, Fault/Thrust/Shear Zones squeezing and swelling, wedge block failure etc. Tehri Pumped Storage Plant (PSP) is located at the left bank of river Bhagirathi in the state of Uttarakhand in Northern India. This case study indicates about the geological challenges faced and their remedial measures during the construction of Tehri PSP Powerhouse Cavern having dimension of 203m x 24m x 58m.3D-geological mapping with 1:100 scales was carried out in excavated central drift of powerhouse to evaluate the rock composition, behavior of rock mass, structural?features and further investigation to finalize the layout and orientation. During the investigation Sheared Phyllite with bands of thinly Phyllite Quartzite rock were encountered in the end portion of central drift of powerhouse which had posed a mammoth challenge in designing the powerhouse cavern. Keeping in view the recommendations of geotechnical experts and the design consultants, decision were made to shift the cavern further by 50 m to avoid Sheared Phyllite bands. The shifting of cavern led to the reorientation of structures like control room, service bay and location of units etc. This paper briefly describes the Engineering Geological and Geotechnical set up of powerhouse with proper investigation approaches and excavation sequences highlighting the importance of orientation and Sheared Phyllite Zone.
机译:喜马拉雅地区地下洞穴的建设充满挑战和不确定性。经验表明,在喜马拉雅地区进行施工需要对地质学有充分的了解,进行充分的现场调查,正确的设计以及选择合适的施工方法和技术。在水力发电项目的地下结构开挖过程中,最常遇到的地质问题是断层/推力/剪切带的挤压和膨胀,楔块的破坏等。Tehri抽水蓄能电站(PSP)位于该州Bhagirathi河的左岸印度北部的北阿坎德邦的地图。该案例研究表明,在建设尺寸为203m x 24m x 58m的Tehri PSP厂房洞穴时面临的地质挑战及其补救措施。在厂房中心开挖中进行了1:100比例的3D地质制图,以评估岩石组成,岩体行为,结构特征以及进一步研究以最终确定布局和方向。在调查过程中,在动力室中央漂移的末端遇到了带薄的菲尔岩石英岩带的带剪切的菲尔岩,这对设计动力室洞穴提出了巨大的挑战。考虑到岩土工程专家和设计顾问的建议,决定将洞穴进一步移开50 m,以避开剪切的Phyllite带。洞穴的移动导致控制室,服务舱和单位位置等结构的重新定向。本文简要介绍了动力室的工程地质和岩土工程设置,并采用了适当的调查方法和开挖顺序,突出了定向和带剪切角皮岩的重要性区。

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