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Synoptic conditions associated with cool season post-fire debris flows in the Transverse Ranges of southern California

机译:与凉爽季节后的潮天道条件在南加利福尼亚州南部的横向范围内

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摘要

The Transverse Ranges of southern California often experience fire followed by flood. This sequence sometimes causes post-fire debris flows (PFDFs) that threaten life and property situated on alluvial fans. The combination of steep topography, highly erodible rock and soil, and wildfire, coupled with intense rainfall, can initiate PFDFs even in cases of relatively small storm rainfall totals. This study identifies common atmospheric conditions during which damaging PFDFs occur in the Transverse Ranges during the cool season, defined here as November-March. A compilation of 93 PFDF events during 1980-2014 triggered by 19 precipitation events is compared against previous studies of the events, reanalysis, precipitation, and radar data to estimate PFDF trigger times. Each event was analyzed to determine common atmospheric features and their range of values present at and preceding the trigger time. Results show atmospheric rivers are a dominant feature, observed in 13 of the 19 events. Other common features include low-level winds orthogonal to the Transverse Ranges and other conditions favorable for orographic forcing, a strong upper level jet south of the region, and moist-neutral static stability. Several events included closed low-pressure systems or narrow cold frontal rain bands. These findings can help forecasters identify more precisely the synoptic-scale atmospheric conditions required to produce PFDF-triggering rainfall and thus reduce uncertainty when issuing warnings.
机译:南加州横向范围经常经历火灾,然后遭到洪水。此序列有时会导致火灾后碎片(PFDF)威胁到扇子的寿命和属性。陡峭地形,高度易蚀的岩石和土壤以及野火的结合,加上强烈的降雨,即使在相对较小的风暴降雨量的情况下也可以发起PFDF。本研究识别常见的大气条件,在此期间在凉爽的季节期间造成损坏的PFDFS,在此处定义为11月至3月。在1980-2014期间汇编了198-2014的1980-2014触发的1980-2014,与之前的事件,再分析,降水和雷达数据的研究进行了比较,以估计PFDF触发时间。分析每个事件以确定常见的大气特征及其在触发时间之前和前面的值范围。结果显示大气河流是一个主导功能,在19场活动中的13中观察到。其他常见特征包括与横向范围的低级风和横向范围的低水平风力,以及地区南部的强大的上层喷射,以及潮湿中性静态稳定性。几个事件包括封闭的低压系统或狭窄的冷额雨段。这些调查结果可以帮助预测仪更精确地确定生产PFDF触发降雨所需的概要大气条件,从而减少发出警告时的不确定性。

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