确定中国大陆降雪和降雨的临界气温

IF 3.2 3区 地球科学 Q1 Environmental Science Hydrological Processes Pub Date : 2024-06-05 DOI:10.1002/hyp.15139
Yulian Liu, Guoyu Ren
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引用次数: 0

摘要

在气候变化、极端降水和水文模拟研究中,将现有历史降水数据分为固态降水和液态降水仍是一项挑战。本研究基于中国大陆地区历史日气温和降水资料,以及降水阶段的直观观测资料(天气现象记录),提出了降雪日直接定义方法(SDDM)来确定降雨和降雪的临界气温(TAT),并分析了其空间模式及其影响因素。主要研究结果包括(1) 基于 SDDM 的临界温度变化范围为-1.2 至 6.3°C,整个研究区域的平均值为 2.8°C;(2) 低纬度地区的临界温度普遍较高且变化较大,青藏高原的平均临界温度异常高,达到 5.2°C,几乎是东部季风区的两倍;(3) 临界温度与海拔呈显著正相关,与降水和相对湿度呈负相关。本文的研究结果可用于地理和气候条件复杂多样地区的大尺度降雪气候学和气候变化研究、天气预报技术和水文模型参数化。
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Determining threshold air temperature of snowfall and rainfall in China mainland

Separating existing historical precipitation data into solid and liquid precipitation remains a challenge in the study of climate change, extreme precipitation, and hydrological modelling. Based on historical daily air temperature and precipitation data, as well as visual observations of precipitation phase (weather phenomena records) in China mainland, this study proposed a snow-day direct definition method (SDDM) to determine the threshold air temperature (TAT) of rainfall and snowfall, and analysed the spatial pattern and its influential factors. The main findings include: (1) the TAT based on the SDDM varied from −1.2 to 6.3°C, with a mean value of 2.8°C for the entire study region; (2) TAT was generally higher and more variable in the low-latitude areas, and the Qinghai-Tibet Plateau was characterized by an abnormally high average TAT of 5.2°C, almost twice as large as that of the eastern monsoon region; (3) TAT exhibited a significant positive correlation with altitude and negative correlation with precipitation and relative humidity. The results presented in this paper have potential application for studies of large-scale snowfall climatology and climate change, weather forecasting techniques, and hydrological model parameterization in areas with complex and diverse geographical and climatic conditions.

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来源期刊
Hydrological Processes
Hydrological Processes 环境科学-水资源
CiteScore
6.00
自引率
12.50%
发文量
313
审稿时长
2-4 weeks
期刊介绍: Hydrological Processes is an international journal that publishes original scientific papers advancing understanding of the mechanisms underlying the movement and storage of water in the environment, and the interaction of water with geological, biogeochemical, atmospheric and ecological systems. Not all papers related to water resources are appropriate for submission to this journal; rather we seek papers that clearly articulate the role(s) of hydrological processes.
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