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SPECIALIST DAM SAFETY INSTRUMENTATION FOR IDENTIFYING AND MONITORING EARTHQUAKE DAMAGE AT AVIEMORE DAM, NEW ZEALAND

机译:专家级水坝安全仪表,用于识别和监测新西兰AVIEMORE DAM的地震损伤

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摘要

There are a number of geological faults in close proximity to Aviemore Power Station in the South Island of New Zealand, including a fault in the foundation of the 48m high earth dam component of the power station. Possible movement of the Waitangi Fault in the earth dam foundation is of particular concern for dam safety, and the effects on the dam of a fault rupture has been the subject of detailed investigation by the dam's owner Meridian Energy Ltd. These investigations have concluded that the dam will withstand the anticipated fault displacement related to the Safety Evaluation Earthquake without catastrophic release of the reservoir. The identification of damage to the dam following an earthquake and monitoring of the dam to identify the development of potential failure mechanisms are important for determining the post-earthquake safety of the power station. The first stage of the post-earthquake response plan is the quick identification of any foundation fault rupture and damage to the dam to enable immediate post-earthquake mitigation measures to be initiated, such as reservoir drawdown. Following initial response, the next stage of the post-earthquake monitoring programme for the embankment dam is longer term monitoring to identify a changing seepage condition due to damage to the dam that might lead to a piping incident. Such an incident may not occur immediately after an earthquake, and it can be some time before the piping process becomes evident. This paper presents some key instrumentation installed at Aviemore Dam and included in the emergency response plan for the post-earthquake monitoring of the embankment dam.
机译:新西兰南岛的阿维莫尔电站附近有许多地质断层,其中包括电站48m高土坝组件基础上的断层。怀坦伊断层在土坝坝基中可能的运动对坝的安全性特别重要,并且断层破裂对坝的影响已成为坝所有者Meridian Energy Ltd进行详细调查的对象。这些调查得出的结论是:大坝将承受与安全评估地震有关的预期断层位移,而不会导致水库的灾难性释放。地震后对大坝的破坏的识别以及对大坝的监视以识别潜在故障机制的发展对于确定电站的地震后安全性至关重要。地震后响应计划的第一阶段是快速识别任何基础断层破裂和对大坝的破坏,以便立即启动减震措施,例如水库降水。在初步响应之后,路堤大坝的地震后监视计划的下一阶段是长期监视,以识别由于大坝的损坏而可能导致管道事故的渗流状况变化。这样的事件可能不会在地震后立即发生,并且可能需要一段时间才能显现出管道过程。本文介绍了一些安装在Aviemore大坝上的关键仪器,这些重要仪器已包括在堤坝大坝震后监测的应急计划中。

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