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Impact of earthquake-induced dammed lakes on channel evolution and bed mobility: Case study of the Tsaoling landslide dammed lake

机译:地震诱发的堰塞湖对河道演变和河床流动性的影响:以曹岭滑坡堰塞湖为例

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摘要

On May 12, 2008, a mega earthquake measuring 8.0 on the Richter scale hit Wenchuan, Sichuan province of China, causing severe casualties and damages. The tremor was felt by nearly all of Asia. The quake-induced landslides and sliding slopes also formed 34 dammed lakes of various sizes, each of which may bring serious potential disasters. Understandably, the earthquake-triggered dammed lakes and their ensuing disasters cause grave concerns worldwide. Similar devastation took place in Taiwan on September 21, 1999, when an earthquake of 7.3 on the Richter scale occurred with the epic center at Jiji in central Taiwan. The earthquake affected changes in the channel course and induced landslides to form several dammed lakes, among which a large dammed lake was created in the upstream Chingshui River with reservoir capacity of 42,000,000 m(3). Its size and potential problems therefore caused serious apprehension. A series of subsequent typhoon-induced torrential flooding events affected the channel forming processes to diverge drastically between the dammed lake and the landslide area, which presented a rare phenomenon for data observation and research. In the last century five dammed lakes had been formed in the area due to landslides, suggesting high possibility of future recurrence, particularly from earthquake activities. An investigation of the channel evolution in this area prior and post a quake, therefore, can assist in current disaster handling protocols and provide policy guidelines for future crisis management when landslides occur. Topographic changes in the study watershed, historical channel surveys, and past studies were gathered to aid the geomorphologic analysis. Channel evolution in the Tsaoling dammed lake and the landslide area was also investigated using a NETSTARS channel scour-deposition model by simulating the trends of erosion and deposition patterns under the influence of different recurrence interval flood peaks and streamflow time series. This simulation analysis demonstrated that the modeling not only successfully predicted the variations of hydraulics and sedimentation along the steep reaches under the influence of various streamflow conditions, but also properly reflected the trend of scouring and deposition in the entire study reach and the upstream migration of head-cut.
机译:2008年5月12日,里氏8.0级特大地震袭击了中国四川汶川,造成严重的人员伤亡和财产损失。几乎整个亚洲都感受到了这种震颤。地震引起的滑坡和滑坡还形成了34个大小各异的堰塞湖,每个湖泊都可能带来严重的潜在灾害。可以理解,地震引发的大坝湖泊及其造成的灾难引起了全世界的严重关注。 1999年9月21日,台湾发生了类似的灾难,当时台湾中部集极的史诗中心发生了里氏7.3级地震。地震影响了河道的变化并诱发了滑坡,形成了数个堰塞湖,其中在清水河上游形成了一个堰塞湖,蓄水量为42,000,000 m(3)。因此,它的大小和潜在问题引起了严重的担忧。随后发生的一系列台风引发的洪灾事件影响了河道形成过程,使大坝湖与滑坡区之间急剧分歧,这为数据观测和研究提供了一种罕见的现象。在上个世纪,由于滑坡在该地区形成了五个堰塞湖,这表明将来有可能再次发生,特别是由于地震活动。因此,在地震发生之前和之后对该区域的渠道演变进行调查可以帮助制定当前的灾难处理协议,并为发生滑坡时的未来危机管理提供政策指导。研究分水岭的地形变化,历史航道调查和过去的研究均被收集以帮助进行地貌分析。利用NETSTARS河道冲刷沉积模型,通过模拟不同重复间隔洪水高峰和水流时间序列的作用下的侵蚀和沉积模式趋势,还研究了曹岭大坝湖泊和滑坡区的河道演变。仿真分析表明,该模型不仅成功地预测了在各种水流条件的影响下沿陡河段水力和沉积物的变化,而且还正确反映了整个研究河段冲刷和沉积的趋势以及水头的上游迁移。 -切。

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