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Debris-Flow Monitoring for the Set-Up of a Warning and Alarm System -Experiences from the Pyrenees-

机译:监测预警和警报系统的泥石流-比利牛斯山脉的经验-

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Debris-flow monitoring sites provide many important inputs on their mechanics and strongly improved the understanding on this hazardous process. Monitoring data are the basis for future early warning systems (EWS) and alarm systems (AS). In this study, results from the Rebaixader monitoring are presented and evaluated for the implementation in an EWS and AS at catchment scale. The key parameters are the rainfall thresholds for the warning and the ground vibration produced by the moving debris flow for the alarm emission. At regional scale, a preliminary EWS for a test area in the Central-Eastern Pyrenees is evaluated. The EWS is based on quantitative precipitation estimates obtained from the weather radars and a simple susceptibility model, which is applied in each basin of the test area. The experiences gathered in the Pyrenees show that the knowledge on initiation and flow behaviour of debris flows has strongly advanced and facilitate the set-up of operational EWS or AS. However, there are still remaining various uncertainties (especially related to the adequate definition of thresholds), which must be evaluated and continuously eliminated.
机译:泥石流监测现场为他们提供了许多重要的技术信息,并极大地增进了人们对该危险过程的理解。监视数据是未来预警系统(EWS)和警报系统(AS)的基础。在本研究中,将介绍Rebaixader监测的结果,并评估在流域规模的EWS和AS中的实施情况。关键参数是警告的降雨阈值和移动的泥石流产生的地面振动以发出警报。在区域范围内,评估了中东部比利牛斯山脉试验区的初步EWS。 EWS基于从天气雷达获得的定量降水估算和简单的磁化率模型,该模型适用于测试区域的每个盆地。在比利牛斯山脉中收集的经验表明,关于泥石流的起爆和流动行为的知识已大大增强,并有助于建立可运行的EWS或AS。但是,仍然存在各种不确定性(尤其是与阈值的适当定义有关),必须对其进行评估并不断予以消除。

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