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Pre-2014 mudslides at Oso revealed by InSAR and multi-source DEM analysis

机译:InSAR和多源DEM分析揭示了Oso在2014年之前的泥石流

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The March 22, 2014 Oso mudslide at Washington was an extreme event costing nearly 40 deaths and damaging civilian properties. Historic record indicates that there have been serial events in decades. In our study, the combination of multi-source digital elevation models (DEMs), interferometric synthetic aperture radar (InSAR), and time-series InSAR analysis allowed us to characterize the Oso mudslide. The difference of shuttle radar topography mission (SRTM) and 2003 light detection and ranging (LiDAR) DEM indicated the topographic changes before 2006 mudslide, and the combination of time-series InSAR analysis and old-dated DEM (2000 SRTM, 2003 LiDAR DEM) revealed topographic changes associated with the 2006 sliding event. InSAR results from advanced land observing satellite (ALOS) phased array type L-band synthetic aperture radar (PALSAR) and LiDAR DEMs show that there were no significant topographic changes between 2007 and 2013 before the 2014 mudslide. The lasting toe erosion and logging near the landslide site could affect the 2006 mudslide event. Elevated discharges during wet seasons after 2006 accelerated the erosion of slumps deposited after the 2006 mudslide, which lessened the beneficial buttressing effect of the landslide toe with increased pore pressure during relatively higher rainfall after 2006. The vicious toe erosion within a relatively short period of eight years might play a critical role on the run-away event at Oso in 2014.
机译:2014年3月22日,在华盛顿举行的奥索(Oso)泥石流是一次极端事件,造成近40人死亡,并破坏了民用财产。历史记录表明,几十年来发生了一系列事件。在我们的研究中,多源数字高程模型(DEM),干涉合成孔径雷达(InSAR)和时间序列InSAR分析的结合使我们能够表征Oso泥石流。航天飞机雷达地形任务(SRTM)与2003年光探测与测距(LiDAR)DEM的差异表明2006年泥石流之前的地形变化,以及时间序列InSAR分析和旧式DEM的结合(2000 SRTM,2003 LiDAR DEM)揭示了与2006年滑动事件相关的地形变化。先进的陆地观测卫星(ALOS)相控阵型L波段合成孔径雷达(PALSAR)和LiDAR DEM的InSAR结果表明,在2014年泥石流之前,2007年至2013年之间没有明显的地形变化。脚趾的持续侵蚀和滑坡附近的伐木活动可能会影响2006年的泥石流事件。 2006年以后的湿季排放量增加,加速了2006年滑坡后沉积的滑坡的侵蚀,从而降低了滑坡趾的有益支撑作用,在2006年以后相对较高的降雨过程中,孔隙压力增加。在8个相对较短的时间内,恶性趾趾被侵蚀年对于2014年Oso的失控事件可能起着至关重要的作用。

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