The Isotopic Composition of Rainfall on a Subtropical Mountainous Island

IF 3.1 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of Hydrometeorology Pub Date : 2023-04-01 DOI:10.1175/jhm-d-21-0204.1
Giuseppe Torri, Alison D. Nugent, Brian N. Popp
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引用次数: 1

Abstract

Abstract Tropical islands are simultaneously some of the most biodiverse and vulnerable places on Earth. Water resources help maintain the delicate balance on which the ecosystems and the population of tropical islands rely. Hydrogen and oxygen isotope analyses are a powerful tool in the study of the water cycle on tropical islands, although the scarcity of long-term and high-frequency data makes interpretation challenging. Here, a new dataset is presented based on weekly collection of rainfall H and O isotopic composition on the island of O‘ahu, Hawai‘i, beginning from July 2019 and still ongoing. The data show considerable differences in isotopic ratios produced by different weather systems, with Kona lows and upper-level lows having the lowest δ 2 H and δ 18 O values, and trade-wind showers the highest. The data also show significant spatial variability, with some sites being characterized by higher isotope ratios than others. The amount effect is not observed consistently at all sites. Deuterium excess shows a marked seasonal cycle, which is attributed to the different origin and history of the air masses that are responsible for rainfall in the winter and summer months. The local meteoric water line and a comparison of this dataset with a long-term historical record illustrate strong interannual variability and the need to establish a long-term precipitation isotope monitoring network for Hawai‘i. Significance Statement The isotopic composition of water is often used in the study of island water resources, but the scarcity of high-frequency datasets makes the interpretation of data difficult. The purpose of this study is to investigate the isotopic composition of rainfall on a mountainous island in the subtropics. Based on weekly data collection on O‘ahu, Hawai‘i, the results improve our understanding of the isotopic composition of rainfall due to different weather systems, like trade-wind showers or cold fronts, as well as its spatial and temporal variability. These results could inform the interpretation of data from other mountainous islands in similar climate zones.
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亚热带山地岛屿降水的同位素组成
热带岛屿既是地球上生物多样性最丰富的地方,也是最脆弱的地方。水资源有助于维持生态系统和热带岛屿人口赖以生存的微妙平衡。氢和氧同位素分析是研究热带岛屿水循环的有力工具,尽管缺乏长期和高频数据使解释具有挑战性。在这里,基于夏威夷奥胡岛每周收集的降雨H和O同位素组成的新数据集,从2019年7月开始,目前仍在进行中。不同天气系统产生的同位素比值差异较大,科纳低气压和高空低气压的δ 2h和δ 18o值最低,信风阵雨最高。数据还显示出显著的空间变异性,一些地点的同位素比值高于其他地点。数量效应并不是在所有地点都一致观察到的。氘过量表现出明显的季节性循环,这是由于造成冬季和夏季降雨的气团的不同起源和历史。当地的大气水线以及该数据集与长期历史记录的比较表明,夏威夷的年际变化很强,需要建立一个长期降水同位素监测网络。水的同位素组成常用于海岛水资源的研究,但高频数据集的稀缺给数据的解释带来了困难。本研究的目的是研究亚热带山区岛屿降雨的同位素组成。基于在夏威夷奥胡岛每周收集的数据,结果提高了我们对不同天气系统(如信风阵雨或冷锋)引起的降雨的同位素组成及其时空变化的理解。这些结果可以为类似气候带的其他山地岛屿的数据解释提供信息。
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来源期刊
Journal of Hydrometeorology
Journal of Hydrometeorology 地学-气象与大气科学
CiteScore
7.40
自引率
5.30%
发文量
116
审稿时长
4-8 weeks
期刊介绍: The Journal of Hydrometeorology (JHM) (ISSN: 1525-755X; eISSN: 1525-7541) publishes research on modeling, observing, and forecasting processes related to fluxes and storage of water and energy, including interactions with the boundary layer and lower atmosphere, and processes related to precipitation, radiation, and other meteorological inputs.
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