首页> 外文期刊>Journal of Hydrology >Characterization of the long-term changes in moisture, clouds and precipitation in the ascending and descending branches of the Hadley Circulation
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Characterization of the long-term changes in moisture, clouds and precipitation in the ascending and descending branches of the Hadley Circulation

机译:哈德利循环的上升分支中的水分,云层和降水的长期变化的特征

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Climate model simulations and observations show that there is a poleward expansion of the Hadley Circulation (HC) as well as a strengthening of the hydrological cycle in a warming climate. However, to establish a relation between the two phenomena in present day climate, simultaneous investigations of the HC and hydrological cycle changes using observational/reanalysis data are necessary, which is limited as compared to model simulations. In this regard, the present study employs relative humidity (RH), cloud fraction (CF) and precipitation (RF) parameters of the hydrological cycle and analyse their long term changes within the HC ascending and descending regions, simultaneously. Long term RH and CF data (1979-2016) are obtained from ERA-I reanalysis, and RF from GPCP precipitation dataset. The boundaries of the HC are identified using the meridional Mass Stream Function (MSF) metric, a metric that can track the mass motion in the atmosphere in the meridional direction. The analysis brings out the spatial pattern of the distribution of trends in hydrological parameters within the HC boundaries. The trends are observed to be significantly positive at the edges of the HC ascending region and significantly negative in the regions near the HC edges, insignificant (and in some cases, negative) in the deep tropics. This pattern is more or less consistent in RH, CF, as well as RF parameters. Thus the study shows that there are regions of positive as well as negative trends within the both ascending and descending regions. The results are found to be in accordance with the poleward expansion of HC and strengthening of the hydrological cycle. Besides, a northward shift in the HC ascending regions are also indicated from the analysis of the annual cycle of trend in precipitation. The current investigation is thus envisaged to contribute to further exploration on the relation between the HC changes and the intensification of the hydrological cycle in a warmer climate.
机译:气候模型模拟和观察结果表明,哈德利循环(HC)的膨胀膨胀以及在温暖的气候中加强水文循环。然而,为了在当今气候中的两个现象之间建立关系,需要使用观察/再分析数据的HC和水文循环变化的同时调查,这是有限的,与模型模拟相比。在这方面,本研究采用水文循环的相对湿度(RH),浊度(CF)和沉淀(RF)参数,并同时分析其在HC上升和下降区内的长期变化。长期RH和CF数据(1979-2016)是从ERA-I重新分析获得的,以及来自GPCP降水数据集的RF。使用子午类质量流功能(MSF)度量,可以识别HC的界限,该度量可以在经历方向上追踪大气中的大气中的质量运动。该分析提出了HC边界内水文参数趋势分布的空间模式。观察到趋势在HC上升区域的边缘处显着呈阳性,并且在HC边缘附近的区域中显着负,在深热带中的微不足道(以及某些情况下,负面)。该模式在RH,CF和RF参数中或多或少一致。因此,研究表明,在上升和下降区域内有积极的区域以及负趋势。发现结果是根据HC的极向扩展和加强水文循环。此外,还从降水趋势的年度循环分析中指出了HC升序区域的向北转变。因此,目前的调查是有助于进一步探索HC变化与温暖气候中水文循环的关系的进一步探索。

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