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Contrasting North-South changes in Amazon wet-day and dry-day frequency and related atmospheric features (1981-2017)

机译:亚马逊湿天和干天频率及相关大气特征的南北变化(1981-2017)

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摘要

This study provides an updated analysis of the evolution of seasonal rainfall intensity in the Amazon basin, considering the 1981-2017 period and based on HOP (interpolated HYBAM observed precipitation) and CHIRPS (The Climate Hazards Group Infrared Precipitation with Stations) rainfall data sets. Dry and wet day frequencies as well as extreme percentiles are used in this analysis, producing the same results. Dry-day frequency (DDF) significantly increases in the Southern Amazon (p0.01), particularly during September-November (SON) in the Bolivian Amazon, central Peruvian Amazon and far southern Brazilian Amazon. Consistently, total rainfall in the southern Amazon during SON also shows a significant diminution (p0.05), estimated at 18%. The increase in SON DDF in the southern Amazon is related to a warming of the northern tropical Atlantic Ocean and a weakening of water vapour flux from the tropical Atlantic Ocean. The increase in DDF in the southern Amazon is related to enhanced wind subsidence (ascendance) over the 10 degrees S-20 degrees S (5 degrees S-5 degrees N) region and to a deficit (excess) of specific humidity at 1000-300hPa south of 10 degrees S (north of the 5 degrees S), which suggest a reduction of deep convection over southern Amazonia. Subsidence over the southern Amazon shows a significant trend (p0.01), which can explain the significant increase in DDF. Wet-day frequency (WDF) significantly increases in the northern Amazon, particularly during the March-May (MAM) period (p0.01), producing an estimated rainfall increase during MAM of 17% (p0.01) between 1981 and 2017. Significant changes in both WDF and rainfall in northern Amazon have been detected in 1998 (p0.01). After 1998, the increase in MAM WDF and rainfall is explained by enhanced moisture flux from the tropical North Atlantic Ocean and an increase in deep convection over the northern and northwestern Amazon. These evolutions in DDF and WDF and in the tropical atmosphere occur simultaneously with an increase in sea surface temperature in the northern Atlantic Ocean, particularly after the mid-1990s. These results provide new insight into rainfall variability and climatic features related to increasing dry season length in southern Amazonia. Severe recent droughts may be associated with the increase in DDF in the South. In addition, the increase in MAM rainfall intensity in northern Amazon after 1998 may be associated with several historical floods that occurred after this date.
机译:这项研究考虑了1981-2017年期间,并基于HOP(内插的HYBAM观测降水量)和CHIRPS(带站的气候灾害组红外降水)降雨数据集,提供了对亚马逊河流域季节性降雨强度变化的最新分析。在此分析中,使用了干燥和潮湿的白天频率以及极端百分位数,产生了相同的结果。南部亚马逊地区的干旱天频率(DDF)显着增加(p <0.01),特别是在玻利维亚亚马逊地区,秘鲁中部亚马逊地区和巴西南部南部地区的9-11月(SON)。一致地,SON期间南部亚马逊南部的总降雨量也显示出明显减少(p <0.05),估计为18%。亚马逊南部的SON DDF的增加与北部热带大西洋的变暖和热带大西洋的水蒸气通量减弱有关。亚马逊南部南部DDF的增加与10°S-20°S(5°S-5°N)区域的风沉降(上升)增强以及1000-300hPa的特定湿度不足(过量)有关。南10度(南5度以北)的南部,这表明亚马逊南部南部的深对流减少。南部亚马逊地区的沉降呈明显趋势(p <0.01),这可以解释DDF的显着增加。在亚马逊河北部,尤其是在三月至五月(MAM)期间,湿天频率(WDF)显着增加(p <0.01),在1981年至2017年之间,MAM期间的估计降雨量增加了17%(p <0.01)。 1998年,在亚马逊北部发现了WDF和降雨的显着变化(p <0.01)。 1998年之后,MAM WDF和降雨量增加的原因是热带北大西洋的水汽通量增加,以及亚马逊北部和西北部的深对流增加。 DDF和WDF以及热带大气中的这些演变与北大西洋北部海面温度的上升同时发生,特别是在1990年代中期之后。这些结果提供了与南部亚马逊地区干旱季节长度增加有关的降雨变化和气候特征的新见识。南部最近的严重干旱可能与DDF的增加有关。此外,1998年后亚马逊北部北部MAM降雨强度的增加可能与该日期之后发生的几次历史性洪水有关。

著录项

  • 来源
    《Climate dynamics》 |2019年第10期|5413-5430|共18页
  • 作者单位

    IGP, Calle Badajoz 169, Lima, Peru;

    Univ Paris Diderot, Paris, France|Sorbonne Univ, Sorbonne Paris Cite, UMR Locean, UPMC,CNRS,IRD,MNHN, Paris, France;

    Ctr Nacl Monitoramento & Alerta Desastres Nat CEM, Sao Paulo, Brazil;

    Univ Grenoble Alpes, UMR Geosci Environm Lab, Grenoble INP, IGE,CNRS,IRD,UGA, Grenoble, France;

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