对流层低层水汽与伊朗季节性降水的关系

IF 2.3 4区 地球科学 Q3 METEOROLOGY & ATMOSPHERIC SCIENCES
Hasan Nuroozi, Amin Shirvani, Mathew Barlow
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引用次数: 0

摘要

本文从地面到850 hPa的垂直综合比湿度(VISH)角度研究了伊朗季节降水与低层湿度的关系。VISH是根据ERA5数据计算的区域(10°N - 60°N, 15°E - 80°E),降水是由伊朗50个站点计算的,均为1968-2023年。应用典型相关分析(CCA)研究了1 - 3月(JFM)、4 - 6月(AMJ)和10 - 12月(OND)季节平均湿度与降水的时空关系。在CCA中,VISH和降水分别被认为是同步预报场和预测场。CCA时间序列与全球海面温度相关,以评估其与大尺度、潜在可预测的变率模式的联系。CCA空间格局表明,低层水汽与季节降水之间存在较强的相关性,波斯湾、阿曼海、阿拉伯海和红海上空的VISH与伊朗大部分地区的降水呈正相关,而里海和黑海上空的VISH则呈负相关。一般来说,这些关系在伊朗西北部地区和里海沿海地区明显较低,CCA对这些地区的预测能力仍然有限。在OND中,领先的CCA时间序列显示出众所周知的与El Niño-Southern振荡(ENSO)的联系。然而,最高的CCA技能是在JFM降水中发现的,它没有表现出ENSO联系,因此可能呈现出额外的技能来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The relationship between moisture in the low level of the troposphere and seasonal precipitation over Iran

The relationship between moisture in the low level of the troposphere and seasonal precipitation over Iran

This paper investigates the relationship between seasonal precipitation over Iran and low-level moisture, in terms of vertically integrated specific humidity (VISH) from the surface to 850 hPa. The VISH is calculated from ERA5 data for the domain (10°N–60°N, 15°E–80°E), and the precipitation is calculated from 50 stations across Iran, both for the period 1968–2023. Canonical correlation analysis (CCA) is applied to examine the spatial–temporal relationship between seasonal averages of moisture and precipitation during January–March (JFM), April–Jun (AMJ), and October–December (OND). VISH and precipitation are considered as the simultaneous predictor and predictand fields in the CCA, respectively. The CCA time series are correlated to global sea surface temperatures to assess the connections to large-scale, potentially predictable modes of variability. The CCA spatial patterns indicate that there is a strong relationship between low-level moisture and seasonal precipitation, with VISH over the Persian Gulf, Oman Sea, Arabian Sea, and Red Sea positively correlated with precipitation over most areas of Iran, while VISH over the Caspian Sea and Black is negatively correlated. Generally, these relationships are notably low over northwestern areas of Iran and the coastal regions of the Caspian Sea and the prediction skill of CCA remains limited over these regions. In OND, the leading CCA time series exhibits the well-known connection to the El Niño–Southern Oscillation (ENSO). However, the highest CCA skill is found for JFM precipitation, which does not exhibit an ENSO connection, and so may present an additional source of skill.

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来源期刊
Meteorological Applications
Meteorological Applications 地学-气象与大气科学
CiteScore
5.70
自引率
3.70%
发文量
62
审稿时长
>12 weeks
期刊介绍: The aim of Meteorological Applications is to serve the needs of applied meteorologists, forecasters and users of meteorological services by publishing papers on all aspects of meteorological science, including: applications of meteorological, climatological, analytical and forecasting data, and their socio-economic benefits; forecasting, warning and service delivery techniques and methods; weather hazards, their analysis and prediction; performance, verification and value of numerical models and forecasting services; practical applications of ocean and climate models; education and training.
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