首页> 外文期刊>Journal of hydrometeorology >Landfalling Atmospheric Rivers, the Sierra Barrier Jet, and Extreme Daily Precipitation in Northern California's Upper Sacramento River Watershed
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Landfalling Atmospheric Rivers, the Sierra Barrier Jet, and Extreme Daily Precipitation in Northern California's Upper Sacramento River Watershed

机译:降落的大气河,塞拉屏障喷气机和北加利福尼亚上萨克拉门托河流域的极端每日降水

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The upper Sacramento River watershed is vital to California's water supply and is susceptible to major floods. Orographic precipitation in this complex terrain involves both atmospheric rivers (ARs) and the Sierra barrier jet (SBJ). The south-southeasterly SBJ induces orographic precipitation along south-facing slopes in the Mt. Shasta-Trinity Alps, whereas landfalling ARs ascend up and over the statically stable SBJ and induce orographic precipitation along west-facing slopes in the northern Sierra Nevada. This paper explores the occurrence of extreme daily precipitation (EDP) in this region in association with landfalling ARs and the SBJ. The 50 wettest days (i.e., days with EDP) for water years (WYs) 2002-11 based on the average of daily precipitation from eight rain gauges known as the Northern Sierra 8-Station Index (NS8I) are compared to dates from an SSM/I satellite-based landfalling AR-detection method and dates with SBJ events identified from nearby wind profiler data. These 50 days with EDP accounted for 20% of all precipitation during the 10-WY period, or 5 days with EDP per year on average account for one-fifth of WY precipitation. In summary, 46 of 50 (92%) days with EDP are associated with landfalling ARs on either the day before or the day of precipitation, whereas 45 of 50 (90%) days with EDP are associated with SBJ conditions on the day of EDP. Forty-one of 50 (82%) days with EDP are associated with both a landfalling AR and an SBJ. The top 10 days with EDP were all associated with both a landfalling AR and an SBJ.
机译:萨克拉曼多河上游流域对于加利福尼亚的供水至关重要,并且容易遭受大洪水的侵袭。在这种复杂地形中的地形降水既涉及大气河流(AR),也包括塞拉利昂屏障射流(SBJ)。东南偏南SBJ沿山顶朝南的山坡诱发地形降水。 Shasta-Trinity阿尔卑斯山,而登陆的ARs则在静态稳定的SBJ上空上升,并在内华达州北部的西坡引起地形降水。本文探讨了与登陆的ARs和SBJ一起在该地区出现的极端日降水量(EDP)。将2002-11年水年(WYs)的50个最湿日(即带EDP的天),基于来自八个北部北塞拉利昂八站指数(NS8I)的雨量计的平均降水量,与来自SSM的日期进行比较/ I基于卫星的登陆AR检测方法和日期,以及从附近风廓线数据中识别出的SBJ事件。这50天的EDP占10年间所有降水量的20%,或平均每年5天的EDP平均占WY降水量的五分之一。总之,EDP的50天(92%)中有46天与降雨前一天或降落的AR有关,而EDP的50天(90%)中有45天(90%)与EDP当天的SBJ条件相关。 。 50天(82%)的EDP中有四十一天与降落的AR和SBJ都相关。 EDP​​的前10天与降落的AR和SBJ都相关。

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