前所未有的海洋热浪显著加剧了创纪录的2023年东亚夏季热浪

IF 8.3 Q1 GEOSCIENCES, MULTIDISCIPLINARY
AGU Advances Pub Date : 2025-09-02 DOI:10.1029/2025AV001673
Satoru Okajima, Yu Kosaka, Takafumi Miyasaka, Rui Ito
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引用次数: 0

摘要

2023年东亚夏季经历了破纪录的复合湿热极端和周围海洋前所未有的同期海洋热浪(MHW)。了解并量化此类热浪对陆地热浪的影响可以提高对这些极端事件的季节性预测技能。在此,我们评估了2023年MHW对东亚夏季创纪录的大气热浪的影响。通过一组区域大气模式试验,我们发现MHW显著加剧了2023年东亚夏季大气热浪,特别是作为复合湿热极端。除了背景大气环流异常的贡献外,极暖的海洋还放大了地表空气温度和湿度异常。微波对气温的影响通过云和水蒸气变化的辐射效应表现出来。研究结果还表明,在大尺度背景大气条件下,尽管副热带高压对北太平洋西部副热带高压有抑制作用,但大气热浪仍有所放大。通过研究湿球温度对温度和湿度异常的影响,我们发现MHW解释了东亚湿热条件加剧和持续时间延长的20%-50%,其中日本的影响显著。此外,最近的海面变暖趋势显示大大放大了MHW对热浪的影响。我们的研究结果强调了海洋变率和周围海洋的海气相互作用在东亚夏季气候中发生的大气热浪中的关键作用,突出了东亚潮湿和低云量丰富的海洋地区的独特过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Unprecedented Marine Heatwave Significantly Exacerbated the Record-Breaking 2023 East Asian Summer Heatwave

Unprecedented Marine Heatwave Significantly Exacerbated the Record-Breaking 2023 East Asian Summer Heatwave

Unprecedented Marine Heatwave Significantly Exacerbated the Record-Breaking 2023 East Asian Summer Heatwave

Unprecedented Marine Heatwave Significantly Exacerbated the Record-Breaking 2023 East Asian Summer Heatwave

The 2023 East Asian summer experienced a record-breaking compound hot-humid extreme and an unprecedented concurrent marine heatwave (MHW) in surrounding oceans. Understanding and quantifying the impacts of such MHWs on land heatwaves can enhance seasonal prediction skills for these extremes. Here we evaluate the impact of the 2023 MHW on the record-breaking atmospheric heatwave in East Asia during the summer. Through a set of regional atmospheric model experiments, we demonstrate that the MHW significantly exacerbated the 2023 East Asian summer atmospheric heatwave, particularly as a compound hot-humid extreme. The extremely warm ocean amplified both surface air temperature and humidity anomalies, on top of the contributions of background atmospheric circulation anomalies. The MHW influence on air temperature manifests through radiative effects of cloud and water vapor changes. Our results also indicate that the atmospheric heatwave amplifies despite the MHW acts to dampen the western North Pacific subtropical high against large-scale background atmospheric conditions. By examining the effects of both temperature and humidity anomalies through wet-bulb globe temperature, we find that the MHW explains ∼20%–50% of the aggravation and prolonged duration of hot-humid conditions in East Asia, with notable impacts in Japan. Additionally, the recent trend of sea surface warming is shown to substantially amplify the MHW's impact on the heatwave. Our findings underscore the key role of ocean variability and air–sea interactions in surrounding oceans on atmospheric heatwaves that occur in the summer climate in East Asia, highlighting a unique process in the humid and low cloud-abundant maritime East Asia region.

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