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土耳其德里内尔拱坝在最大可信地震下的动力稳定性分析
作者姓名:Martin Wielan  Sujan Mall  Roland Ruoss
作者单位:瑞士苏黎世贝利能源有限公司,161,CH-8037,苏黎世,瑞士
基金项目:致谢:本文的发表得到了土耳其国家水利事务理事会,能源部和自然资源部的许可,在此表示感谢.
摘    要:本文讨论了位于土耳其东北部克鲁赫河上正在建设中的高250m德里内尔拱坝。该拱坝建基面开挖施工已于2005年完成,大坝混凝土已经开始浇筑,预计将于2010年完成大坝混凝土浇筑。建成后,该坝混凝土总方量为330万m3,将是土耳其最高的拱坝,也是世界上最高的拱坝之一。本文详细讨论了大坝的抗震设计。重现期为10000年的安全评估地震的峰值加速度为0.35g。在该地震作用下,坝体中上部将出现沿水平施工缝的裂缝,带有键槽的灌浆横缝也将张开。于是,大坝顶部由于开裂而形成的混凝土坝块可能向水库方向发生位移,本文研究了该混凝土坝块可能出现的最大位移和转动位移。

关 键 词:拱坝  大体积混凝土  地震分析  动力稳定性  刚体动力学
文章编号:0559-9350(2006)12-1516-07
收稿时间:2006-11-16
修稿时间:2006年11月16

The Deriner arch dam in Turkey and its seismic stability under the maximum credible earthquake
Martin Wielan,Sujan Mall,Roland Ruoss.The Deriner arch dam in Turkey and its seismic stability under the maximum credible earthquake[J].Journal of Hydraulic Engineering,2006,37(12):1516-1522.
Authors:Martin Wieland
Affiliation:Poyry Energy Ltd., Hardturmstrasse 161, CH-8037 Zurich, Switzerland
Abstract:The 250m high Definer arch dam in Turkey, which is presently under construction on the Coruh River in north-eastern Turkey, is discussed the concreting of the concrete blocks is in progress concrete will be completed in 2010. It will be the The foundation excavation was completed in 2005 and It is expected that the dam made of conventional mass highest arch dam in Turkey. With a volume of about 3.3 million m^3 , it will also be one of the largest arch dams in the world. Details about the seismic design of the dam are discussed. The safety evaluation earthquake with an average return period of 10 000 years has a peak the central ground acceleration of 0. 35g. It is expected that cracks will form along horizontal lift joints in upper portion of the dam and that the grouted contraction joints provided with shear keys will open under this earthquake of the dam. The expected . Thus, concrete blocks might displace towards the reservoir in the top portion maximum displacement and rocking motion of such blocks are investigated.
Keywords:arch dam  mass concrete  seismic analysis  dynamic stability  rigid body dynamics Hydropower 2004
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