A Study of Recent Changes in Moisture Flux Patterns Over India: Implications for Indian Summer Monsoon Rainfall

IF 2.8 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES
Amarjeet, Vasubandhu Misra, Arun Chakraborty, Anil K. Gupta, Vineet Sharma
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Abstract

This study examines the changes in the linear trends of the precipitable water content (PWC) associated with the Indian summer monsoon rainfall using the ERA-5 datasets. The study period of 63 years (1959–2021) is divided into two time periods P1: 1959–2001 and P2: 2002–2021. In the recent period (P2), we observe a significant rise in the statistically significant linear trend of the mean JJAS PWC leading to a significant positive difference of P2 − P1 over most of India. This change is found to be largest in the middle troposphere, where the rotational component of the moisture flux is strengthened in P2 relative to P1. This modulation is attributed to the non-uniform rate of change of tropospheric air temperature in the lower and middle troposphere in P2 from the rising land–ocean thermal contrast. This results in stabilising the atmosphere. Consequently, we also observe an increase in the fraction of stratiform precipitation in P2 relative to P1. This increase in stratiform precipitation is associated with enhanced mid-atmospheric diabatic heating and mid-tropospheric southwesterly moisture flux, which enhances PWC in P2 compared to P1.

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最近印度水汽通量型变化的研究:对印度夏季风降雨的影响
本研究利用ERA-5数据集考察了与印度夏季季风降雨相关的可降水量(PWC)的线性趋势变化。研究周期63年(1959-2021),分为P1: 1959-2001和P2: 2002-2021两个时间段。在最近一段时间(P2),我们观察到平均JJAS PWC的统计显著线性趋势显著上升,导致印度大部分地区的P2−P1显著正差异。这种变化在对流层中部最大,水汽通量的旋转分量在P2相对于P1增强。这种调制是由于陆海热对比上升导致P2对流层中下层的对流层气温变化率不均匀所致。这导致了大气的稳定。因此,我们还观察到,相对于P1, P2层状降水的比例有所增加。层状降水的增加与大气中非绝热加热和对流层中西南水汽通量的增强有关,与P1相比,P2的PWC增强了。
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来源期刊
International Journal of Climatology
International Journal of Climatology 地学-气象与大气科学
CiteScore
7.50
自引率
7.70%
发文量
417
审稿时长
4 months
期刊介绍: The International Journal of Climatology aims to span the well established but rapidly growing field of climatology, through the publication of research papers, short communications, major reviews of progress and reviews of new books and reports in the area of climate science. The Journal’s main role is to stimulate and report research in climatology, from the expansive fields of the atmospheric, biophysical, engineering and social sciences. Coverage includes: Climate system science; Local to global scale climate observations and modelling; Seasonal to interannual climate prediction; Climatic variability and climate change; Synoptic, dynamic and urban climatology, hydroclimatology, human bioclimatology, ecoclimatology, dendroclimatology, palaeoclimatology, marine climatology and atmosphere-ocean interactions; Application of climatological knowledge to environmental assessment and management and economic production; Climate and society interactions
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