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Geotechnical aspects and seismic damage of the 156-m-high Zipingpu concrete-faced rockfill dam following the Ms 8.0 Wenchuan earthquake

机译:汶川8.0级地震后156米高的紫坪铺面板堆石坝的岩土工程及地震破坏。

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Damage to the Zipingpu concrete-faced rockfill dam (CFRD) with the maximum height of 156 m was induced by the great May 12, 2008 Wenchuan earthquake with a magnitude of Ms 8.0. The dam is the first CFRD over 150 m high experiencing the strong shallow earthquake of IX degree in the world. The seismic damage to the dam raised a number of questions concerning the safety of the dam as well as the adequacy of design criteria. Extensive investigation has been carried out accordingly and is summarized in this paper. The purpose of this paper is to document geotechnical aspects of the design and seismic damage during earthquake, and in particular to highlight key experiences and lessons learned. Analysis of the instrumental records during the earthquake and results of the subsequent surveys following the quake yield three key conclusions as follows. (1) The earthquake motion mainly caused significant seismic non-uniform deformation of the embankment and damage to the face slabs, structures on the crest and downstream stone masonry. The predominantly longitudinal seismic motion intensified the interaction between the embankment and the abutments. The seismic deformation of the embankment and the strong interaction between the abutments and embankment were believed to have been responsible for damage to face slabs. Seepage through the dam increased, but was not significant, due to water-seal damage in the concrete face and peripheral joints. In general, the damage to the dam, although serious in some parts, was minor as a whole and was reparable. (2) Several design considerations contributed to the safety of the Zipingpu dam. Shallow-angle slopes on the downstream dam face were used to enhance the stability of the dam. Most significantly, the adequate zoning and well-compacted rockfill enabled effective deformation control of the embankment, thus greatly reducing the seismic deformation during ground shaking and ensuring the safety of the seepage control system. The performance of the Zipingpu dam during the earthquake evidenced the success of the design. (3) Overall, the Zipingpu CFRD was structurally stable and safe even though it was subjected to seismic shaking at a greater magnitude than the design seismicity. High CFRDs are feasible in seismic regions of western China if adequate design considerations are implemented to alleviate as much damage as possible during major earthquakes. (c) 2015 Elsevier Ltd. All rights reserved.
机译:2008年5月12日汶川8.0级特大地震对紫坪铺面板堆石坝(CFRD)的最大高度造成了156m的破坏。该水坝是世界上第一个超过150 m的CFRD,经历了IX级的强烈浅层地震。大坝的地震破坏引发了许多有关大坝安全性以及设计标准是否适当的问题。因此进行了广泛的研究,并在本文中进行了总结。本文的目的是记录设计过程中岩土工程方面的情况以及地震期间的地震破坏,尤其是突出重要的经验和教训。地震期间仪器记录的分析以及地震后的后续调查结果得出以下三个主要结论。 (1)地震运动主要是造成路堤明显的地震非均匀变形,并破坏了面板,波峰和下游砌筑物的结构。主要的纵向地震运动增强了路堤和桥台之间的相互作用。路堤的地震变形以及桥台与路堤之间的强烈相互作用被认为是造成面板破坏的原因。由于混凝土面和外围接缝的水封损坏,通过大坝的渗漏增加了,但并不明显。总的来说,对水坝的损害虽然在某些地方是严重的,但整体上是很小的,是可以弥补的。 (2)紫坪铺大坝的安全性有几个设计考虑。下游坝面的浅角斜坡被用来增强坝体的稳定性。最重要的是,适当的分区和紧凑的堆石可以有效地控制路堤的变形,从而大大减少了地震动过程中的地震变形,并确保了防渗系统的安全性。紫坪铺大坝在地震中的表现证明了设计的成功。 (3)总体而言,紫坪铺CFRD即使经受了比设计抗震性更大的地震振动,其结构仍稳定且安全。如果采取适当的设计考虑以减轻大地震期间的最大破坏,则高CFRD在中国西部地震区是可行的。 (c)2015 Elsevier Ltd.保留所有权利。

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