首页> 外文期刊>Natural hazards and earth system sciences >The 6 August 2010 Mount Meager rock slide-debris flow, Coast Mountains, British Columbia: Characteristics, dynamics, and implications for hazard and risk assessment
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The 6 August 2010 Mount Meager rock slide-debris flow, Coast Mountains, British Columbia: Characteristics, dynamics, and implications for hazard and risk assessment

机译:2010年8月6日,不列颠哥伦比亚省海岸山脉的微薄山岩石滑坡-泥石流:特征,动力学以及对危害和风险评估的影响

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A large rock avalanche occurred at 03:27:30 PDT, 6 August 2010, in the Mount Meager Volcanic Complex southwest British Columbia. The landslide initiated as a rock slide in Pleistocene rhyodacitic volcanic rock with the collapse of the secondary peak of Mount Meager. The detached rock mass impacted the volcano's weathered and saturated flanks, creating a visible seismic signature on nearby seismographs. Undrained loading of the sloping flank caused the immediate and extremely rapid evacuation of the entire flank with a strong horizontal force, as the rock slide transformed into a debris flow. The disintegrating mass travelled down Capricorn Creek at an average velocity of 64 m s ~(-1), exhibiting dramatic super-elevation in bends to the intersection of Meager Creek, 7.8 km from the source. At Meager Creek the debris impacted the south side of Meager valley, causing a runup of 270 m above the valley floor and the deflection of the landslide debris both upstream (for 3.7 km) and downstream into the Lillooet River valley (for 4.9 km), where it blocked the Lillooet River river for a couple of hours, approximately 10 km from the landslide source. Deposition at the Capricorn-Meager confluence also dammed Meager Creek for about 19 h creating a lake 1.5 km long. The overtopping of the dam and the predicted outburst flood was the basis for a night time evacuation of 1500 residents in the town of Pemberton, 65 km downstream. High-resolution GeoEye satellite imagery obtained on 16 October 2010 was used to create a post-event digital elevation model. Comparing pre- and post-event topography we estimate the volume of the initial displaced mass from the flank of Mount Meager to be 48.5 × 10 ~6 m ~3, the height of the path (H) to be 2183 m and the total length of the path (L) to be 12.7 km. This yields H/L Combining double low line 0.172 and a fahrb?schung (travel angle) of 9.75°. The movement was recorded on seismographs in British Columbia and Washington State with the initial impact, the debris flow travelling through bends in Capricorn Creek, and the impact with Meager Creek are all evident on a number of seismograms. The landslide had a seismic trace equivalent to a M Combining double low line 2.6 earthquake. Velocities and dynamics of the movement were simulated using DAN-W. The 2010 event is the third major landslide in the Capricorn Creek watershed since 1998 and the fifth large-scale mass flow in the Meager Creek watershed since 1930. No lives were lost in the event, but despite its relatively remote location direct costs of the 2010 landslide are estimated to be in the order of $10 M CAD.
机译:2010年8月6日,太平洋夏令时间03:27:30,在不列颠哥伦比亚省西南部的Mount Meager火山群中发生了一场大雪崩。滑坡起因于更新世的流纹岩火山岩中的岩石滑坡,而Moage Meager的次要山峰坍塌了。分离的岩体撞击了火山的风化饱和侧翼,在附近的地震仪上产生了可见的地震信号。由于岩石滑移转变成泥石流,倾斜侧面的不排水负荷导致整个侧面立即以极强的水平力迅速撤离,这是因为岩石滑移变成了泥石流。崩解团块以平均速度64 m s〜(-1)顺着摩corn溪向下移动,在弯道处到离源头7.8 km的Meager Creek的交汇处表现出戏剧性的超高。在Meager Creek,碎片撞击了Meager山谷的南侧,导致山谷底部上方270 m加速,滑坡碎片向上游(3.7公里)和下游进入Lillooet河山谷(4.9公里)偏转,在那里,它阻挡了Lillooet河的河水几个小时,距离滑坡源头约10公里。摩ri座-薄薄的汇合处的沉积也将薄薄的小溪拦了大约19小时,形成了一个1.5公里长的湖泊。大坝的超车和预计的爆发性洪水是在下游65公里的彭伯顿镇夜间疏散1500名居民的基础。 2010年10月16日获得的高分辨率GeoEye卫星图像用于创建事后数字高程模型。比较赛前和赛后地形,我们估计从梅格山的侧翼开始的初始位移质量为48.5×10〜6 m〜3,路径(H)的高度为2183 m,总长度路径(L)的距离为12.7公里。这将产生H / L组合双低线0.172和9.75°的fahrb?schung(行进角)。在最初的冲击下,该运动记录在不列颠哥伦比亚省和华盛顿州的地震仪上,泥石流通过摩ri河的弯道,而对微薄溪的冲击在许多地震图上都很明显。滑坡的地震迹线相当于M合并双低线2.6地震。使用DAN-W模拟了运动的速度和动力学。 2010年的事件是自1998年以来摩ri河溪流域中的第三次主要滑坡,也是1930年以来第五次在Meager Creek流域发生的第五次大规模泥石流。该事件没有造成人员伤亡,但是尽管2010年的地理位置相对偏远,滑坡估计约为1000万加元。

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