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Using monitoring and modeling to define the hazard posed by the reactivated Ferguson rock slide, Merced Canyon, California

机译:使用监视和建模来确定重新活化的弗格森(Ferguson)岩石滑坡(加利福尼亚州默塞德峡谷)带来的危害

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摘要

Rapid onset natural disasters such as large landslides create a need for scientific information about the event, which is vital to ensuring public safety, restoring infrastructure, preventing additional damage, and resuming normal economic activity. At the same time, there is limited data available upon which to base reliable scientific responses. Monitoring movement and modeling runout are mechanisms for gaining vital data and reducing the uncertainty created about a rapid onset natural disaster. We examine the effectiveness of this approach during the 2006 Ferguson rock slide disaster, which severed California Highway 140. Even after construction of a bypass restoring normal access to the community of El Portal, CA and a major entrance to Yosemite National Park, significant scientific questions remained. The most important for the affected public and emergency service agencies was the likelihood that access would again be severed during the impending rainy season and the possibility of a landslide dam blocking flow in the Merced River. Real-time monitoring of the Ferguson rock slide yielded clear information on the continuing movement of the rock slide and its implications for emergency response actions. Similarly, simulation of runout deposits using a physically based model together with volumes and slope steepness information demonstrated the conditions necessary for a landslide dam-forming event and the possible consequences of such an event given the dimensions of potential rock slide deposits.
机译:快速发生的自然灾害(例如大的山体滑坡)需要有关该事件的科学信息,这对于确保公共安全,恢复基础设施,防止其他破坏以及恢复正常的经济活动至关重要。同时,可用于可靠的科学反应的数据有限。监视运动和模拟跳动是获取重要数据并减少因快速自然灾害造成的不确定性的机制。我们在2006年的弗格森(Ferguson)岩石滑坡灾害中检查了这种方法的有效性,该事故切断了加利福尼亚州的140号高速公路。即使在修建了一条通行管道以恢复通往加州El Portal社区的正常通道以及通往优胜美地国家公园的主要入口之后,仍然存在重大的科学问题保持。对于受影响的公共和紧急服务机构而言,最重要的是在即将来临的雨季再次切断通行的可能性,以及在默塞德河(Merced River)阻塞滑坡的可能性。弗格森(Ferguson)滑坡的实时监控提供了有关滑坡的持续运动及其对应急行动的影响的清晰信息。类似地,使用基于物理的模型对径流沉积物进行模拟,并结合体积和坡度信息,证明了滑坡坝形成事件所需的条件以及给定潜在岩石滑坡沉积物尺寸的此类事件的可能后果。

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