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Back-analysis of geophysical flows using three-dimensional runout model

机译:使用三维跳动模型的地球物理流量的回分析

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Predicting the mobility and delineating the extent of geophysical flows remains a challenge for engineers. The accuracy of predictions hinges on the reliability of input parameters of runout models. Currently, limited field data for landslide case histories are available for benchmarking the performance of runout models. Key rheological parameters, such as the equivalent internal friction angle, cannot be measured directly using laboratory experiments and must instead be determined through back-analyses. A series of dynamic back-analyses was carried out for notable landslide case histories in Hong Kong, accounting for the effects of pore-water pressure on the equivalent internal friction angle, using a three-dimensional finite-element mobility model. The recorded and simulated run-out distances, as well as lateral spreading, were compared. Results reveal that the back-analysed equivalent internal friction angles resulting from open-hillslope failures and from channelized geophysical flows range from 25 degrees to 30 degrees and 15 degrees to 20 degrees, respectively. This is attributed to incised geophysical flow channels having an elevated water head and higher degree of saturation compared to open-hillside slope surfaces, wherein the induced elevated pore-water pressure profoundly lowers the equivalent internal friction angle. The back-calculated values may be useful for finite-element-based design of mitigation measures.
机译:预测移动性并划定地球物理流量的程度仍然是工程师的挑战。预测的准确性铰链跳动模型的输入参数可靠性。目前,LANDSLIDE案例历史的有限现场数据可用于基准测试跳动模型的性能。诸如等效内部摩擦角的关键流变参数不能直接使用实验室实验来测量,并且必须通过后分析来确定。在香港的着名滑坡案例历史进行了一系列动态反分析,占用了三维有限元移动模型的孔隙水压对等效内部摩擦角的影响。比较了记录的和模拟的流出距离,以及横向扩展。结果表明,由开放山坡故障和通道化地球物理流量的后分析等效内部摩擦角度分别从25度到30度和15度至20度。这归因于与开口山坡坡面相比具有升高的水头和更高程度的饱和度的切割地球物理流动通道,其中诱导升高的孔隙水压力深刻地降低了等同的内部摩擦角。背部计算值可用于基于有限元的缓解措施设计。

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