Dye Alex W, Rastogi Bharat, Clemesha Rachel E S, Kim John B, Samelson Roger M, Still Christopher J, Williams A Park
Department of Forest Ecosystems and Society Oregon State University Corvallis OR USA.
USDA Forest Service Corvallis Forestry Sciences Laboratory Pacific Northwest Research Station Corvallis OR USA.
Geophys Res Lett. 2020 Aug 28;47(16):e2020GL088121. doi: 10.1029/2020GL088121. Epub 2020 Aug 19.
Summertime low clouds are common in the Pacific Northwest (PNW), but spatiotemporal patterns have not been characterized. We show the first maps of low cloudiness for the western PNW and North Pacific Ocean using a 22-year satellite-derived record of monthly mean low cloudiness frequency for May through September and supplemented by airport cloud base height observations. Domain-wide cloudiness peaks in midsummer and is strongest over the Pacific. Empirical orthogonal function (EOF) analysis identified four distinct PNW spatiotemporal modes: oceanic, terrestrial highlands, coastal, and northern coastal. There is a statistically significant trend over the 22-year record toward reduced low cloudiness in the terrestrial highlands mode, with strongest declines in May and June; however, this decline is not matched in the corresponding airport records. The coastal mode is partly constrained from moving inland by topographic relief and migrates southward in late summer, retaining higher late-season low cloud frequency than the other areas.
夏季低云在太平洋西北部(PNW)很常见,但时空模式尚未得到描述。我们利用22年卫星获取的5月至9月每月平均低云频率记录,并辅以机场云底高度观测数据,展示了太平洋西北部西部和北太平洋的首张低云量地图。整个区域的云量在仲夏达到峰值,且在太平洋上空最强。经验正交函数(EOF)分析确定了太平洋西北部四种不同的时空模式:海洋模式、陆地高地模式、沿海模式和北部沿海模式。在22年的记录中,陆地高地模式下低云量呈统计学上显著的下降趋势,5月和6月下降最为明显;然而,相应的机场记录中并未出现这种下降。沿海模式部分受到地形起伏的限制而无法向内陆移动,并在夏末向南迁移,其季末低云频率高于其他地区。