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Time mean and variability of the scale-decomposed atmospheric water budget in a 25-year simulation of the Canadian Regional Climate Model over North America

机译:北美地区加拿大气候模式的25年模拟结果表明,按比例分解的大气水预算的时间平均值和变异性

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摘要

The scaled-decomposed atmospheric water budget over North America is investigated through the analysis of 25 years of simulation by the Canadian Regional Climate Model (CRCM) driven by the NCEP-NCAR reanalyses for the period 1975-1999. The time average and time variability of the atmospheric water budget for the winter and summer seasons are decomposed into their large-scale and small-scale components to identify the added value of the regional model. For the winter season, the intra-seasonal transient-eddy variance is the main temporal variability. The large- and small-scale terms are of the same order of magnitude, and are large over both coasts and weak over the continent. For the summer season, the time-mean atmospheric water budget is rather different to that of winter, with maximum values over the south-eastern part of the continent. The summer intra-seasonal variance is about twice stronger than in winter and also dominates the variability, but the inter-monthly variance is non-negligible and can be in part associated to North American Monsoon System. Over the continent, the intra-seasonal climatological variance is dominated by the variability of the small scales. The small scales, that is those scales that are only resolved in the regional model but not in the reanalyses, contribute to the added value in a regional climate simulation. In the winter season, the added value of the CRCM is large and dominated by oceanic forcing, while in summer, it is dominantrn(larger than the large scales) and controlled mainly by convective processes.
机译:通过对1975-1999年间由NCEP-NCAR再分析驱动的加拿大区域气候模型(CRCM)进行的25年模拟分析,对北美按比例分解的大气水预算进行了调查。将冬季和夏季的大气水预算的平均时间和时间变化分解为大型和小型组成部分,以识别区域模型的附加值。对于冬季,季节内瞬态涡变化是主要的时间变化。大型和小型项的数量级相同,在两个沿海地区都很大,在整个大陆上都很弱。在夏季,时间平均的大气水预算与冬季完全不同,在该大陆的东南部具有最大值。夏季的季节内变化大约是冬季的两倍,并且仍占主导地位,但是月度之间的变化不可忽略,并且可能部分与北美季风系统有关。在整个大陆上,季节内的气候变化主要由小尺度的变化决定。小规模,即仅在区域模型中解决而在再分析中未解决的那些规模,有助于区域气候模拟中的附加值。在冬季,CRCM的附加值很大,主要受海洋强迫作用,而在夏季,它占主导地位(大于大规模),主要由对流过程控制。

著录项

  • 来源
    《Climate dynamics》 |2007年第8期|763-777|共15页
  • 作者

    Soline Bielli; Rene Laprise;

  • 作者单位

    Canadian Network for Regional Climate Modelling and Diagnostics, Universite du Quebec a Montreal, OURANOS, 550 rue Sherbrooke Ouest, 19e, Montreal, QC H3A 1B9, Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);
  • 关键词

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