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首页> 外文期刊>Journal of hydrometeorology >The Impact of a Hemispheric Circulation Regime on Fall Precipitation over North America
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The Impact of a Hemispheric Circulation Regime on Fall Precipitation over North America

机译:半球环流制度对北美秋季降水的影响

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摘要

While there is growing evidence that the main contribution to trends in U. S. precipitation occurs during fall, most studies of seasonal precipitation have focused on winter or summer. Here, the leading mode of fall precipitation variability over North America is isolated from multiple data sources and connected to a hemispheric-scale circulation pattern. Over North America, the leading mode of fall precipitation variability in both station-based and satellite-blended data is a tripole that links fall precipitation anomalies in southern Alaska, the central United States, and eastern Canada. This mode is part of a larger pattern of alternating wet and dry anomalies stretching from the western Pacific to the North Atlantic. Dynamically, the precipitation anomalies are closely associated with changes to regional-scale moisture transport that are, in turn, linked to two independently identified hemispheric-scale wave patterns that are one-quarter wavelength out of phase (i.e., in quadrature) and resemble the circumglobal teleconnection.
机译:尽管越来越多的证据表明,对美国降水趋势的主要贡献发生在秋季,但大多数季节性降水研究都集中在冬季或夏季。在这里,北美地区秋季降水变化的主导模式与多个数据源隔离,并与半球尺度的环流模式相关。在北美地区,基于台站数据和卫星混合数据的秋季降水变化的主要模式是将阿拉斯加南部,美国中部和加拿大东部的秋季降水异常联系起来的三叉戟。这种模式是从西太平洋一直延伸到北大西洋的干湿交替交替较大模式的一部分。从动态上讲,降水异常与区域尺度水汽输送的变化密切相关,而区域尺度水汽输送的变化又与两个独立识别的半球尺度波型有关,这两个波型的相位差为四分之一(即正交),并且类似于环全局遥连接。

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