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Probabilistic seismic assessment of arch dams in Turkey

机译:土耳其拱坝的概率地震评估

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Arch dams are of great importance in the world. In Turkey, there are 1200 existing dams with different types. Arch dams are important due to their economic resource in irrigation and water supply which are significant to the homeland security and the agricultural economy. Researchers have been carrying out various studies on dams and their seismic resistance especially after the earthquakes that occurred in the recent years. Turkey is also located at one of the earthquake-active zones. In 1999, devastating earthquakes hit Turkey causing severe property losses and thousands of lives. Excessive ground deformation caused severe crack to the existing buildings. Therefore, it is important to investigate the seismic safety of the existing dams in Turkey. In this study, probabilistic seismic risk assessment has been carried out for arch dams: Gökçekaya, Oymapinar, Karakaya, Gezende, Sir, Berke, Deriner, Ermenek Dams. For these arch dams, structural resistances have been discussed. In addition, their resistances have been determined through time history analysis with 60 different ground motion data. After time history analyses, fragility analyses for arch dams have been carried out. The fragility analysis has been used to determine probability of exceedance. Via fragility analyses, level of risk and probability of exceedance have been determined. The exceedance probabilities of the yield and collapse limit states for arch dams in Turkey have been obtained for a realistic probabilistic determination. According to the results, the role of probabilistic seismic risk assessment in dam safety decisions is addressed in detail.
机译:拱坝在世界上非常重要。在土耳其,现有1200种不同类型的水坝。拱坝之所以重要,是因为其在灌溉和供水方面的经济资源对国土安全和农业经济至关重要。研究人员一直在对水坝及其抗震性进行各种研究,尤其是在近年来发生地震之后。土耳其也位于地震活跃地区之一。 1999年,毁灭性地震袭击了土耳其,造成严重的财产损失和数千人的生命。过度的地面变形会导致现有建筑物的严重开裂。因此,重要的是调查土耳其现有大坝的地震安全性。在这项研究中,已经对拱坝进行了概率地震风险评估:G&ouk; ekaya,Oymapinar,Karakaya,Gezende,Sir,Berke,Deriner和Ermenek Dams。对于这些拱坝,已经讨论了结构阻力。此外,它们的电阻已经通过使用60种不同的地面运动数据进行时程分析来确定。经过时间历史分析后,对拱坝进行了脆弱性分析。脆弱性分析已用于确定超出概率。通过脆弱性分析,确定了风险等级和超出概率。已经获得了土耳其拱坝的屈服极限和倒塌极限状态的超出概率,以便进行实际的概率确定。根据结果​​,将详细探讨概率地震风险评估在大坝安全决策中的作用。

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