基于入渗的偶发泥石流降雨强度阈值研究

Hanqiang Wang, Xiangpeng Ji, Yanping Wang
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摘要

国际上泥石流降雨预警方法通常采用降雨强度和持续时间建立I-D关系,确定泥石流降雨预警阈值。该方法需要研究区泥石流事件的大量降雨数据来建立I-D关系。然而,一些偶尔发生泥石流的地区缺乏足够的泥石流事件来建立I-D关系,以确定降雨预警阈值。因此,本研究利用水流对砾石土的入渗效应,建立了基于极限平衡法的泥石流起爆降雨强度阈值判断公式。以2018年6月13日发生在中国崂山的太青泥石流为例,分析了泥石流的降雨强度和特征。本次降雨过程的最大降雨强度远远超过判断公式确定的降雨强度阈值。利用判断公式,可以确定降雨过程会引起泥石流。判断结果与实际情况(降雨过程中发生泥石流)一致。为进一步验证判断公式的准确性,对2019年8月11日台风“荔枝”在研究区域的降雨过程进行了分析。降雨过程有着悠久的历史。但降雨强度远低于泥石流发生的降雨强度阈值,因此该降雨不会引起泥石流的发生。判断结果与实际情况(雨期未发生泥石流)一致。Doi: 10.28991/CEJ-2023-09-09-02全文:PDF
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Research on Rainfall Intensity Threshold of Occasional Debris Flow Based on Infiltration
The rainfall warning method for debris flows usually uses rainfall intensity and duration to establish an I-D relationship internationally and determine the rainfall warning threshold for debris flows. This method requires extensive rainfall data from debris flow events in the study area to establish the I-D relationship. However, some areas with occasional debris flows lack sufficient debris flow events to establish I-D relationships to determine rainfall warning thresholds. Therefore, this study uses the infiltration effect of water flow on gravel soil and establishes a rainfall intensity threshold judgment formula for debris flow initiation based on the limit equilibrium method. Taking the Taiqing debris flow that occurred in Laoshan, China, on June 13, 2018, as an example, the rainfall intensity and characteristics of the debris flow are analyzed. The maximum rainfall intensity during this rainfall process far exceeds the rainfall intensity threshold determined by the judgment formula. Using the judgment formula, it can be determined that the rainfall process will cause debris flow. The judgment result is consistent with the actual situation (where a debris flow occurred during the rainfall process). To further verify the accuracy of the judgment formula, the rainfall process of Typhoon Lichma on August 11, 2019, in the study area was analyzed. The rainfall process has a long history. Still, the rainfall intensity is much lower than the threshold of rainfall intensity for the initiation of debris flow, so this rainfall will not cause the occurrence of debris flow. The judgment result is consistent with the actual situation (no debris flow occurred during rains). Doi: 10.28991/CEJ-2023-09-09-02 Full Text: PDF
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