海洋储存了地球能量失衡产生的约90%的多余热量。海洋热含量(Ocean Heat Content,OHC)因此成为衡量全球变暖和地球能量失衡的重要指标之一:它记录着海洋内部长期积累的热量,也与海平面上升、海洋热浪、海洋生态系统变化以及全球能量、水和碳循环等过程密切相关。持续监测海洋热含量,是认识全球海洋增暖及其区域差异的重要途径。
《大气科学进展》(Advances in Atmospheric Sciences,AAS)推出海洋热含量变化专题,聚焦全球及区域尺度的海洋热含量变化、海洋增暖速率及其归因,并关注海洋增暖与海表温度、海平面、地球系统能量—水—碳循环等过程之间的联系。专题于2026年9月22日正式上线(https://link.springer.com/journal/376/volumes-and-issues/43-10),中国科学院大气物理研究所成里京研究员、法国Mercator Ocean International的Karina von Schuckmann博士和美国斯克里普斯海洋研究所谢尚平教授担任客座编委,著名气候学家 Kevin E. Trenberth 结合本人科研经历作序。专题共收录5篇研究论文,涵盖2025年全球海洋热含量最新评估、中国近海长期变化、热带印度洋和南太平洋热量异常,以及海洋增暖速率的估算方法。

“Ocean Heat Content Changes”专题封面:一幅白化的珊瑚礁,构成了神话中水下王国倾颓的宫殿,而传说中的“虾兵蟹将”正面临一场现代危机:海洋变暖与酸化正在侵蚀它们赖以生存的“盔甲”。封面创意及虾蟹卡通形象由成里京提出,背景白化珊瑚照片由朱江摄于巴拉望。
本期专题从全球和区域OHC变化、海洋热量再分配到增暖速率估算方法,展示了当前海洋热含量研究的几个重要方向。相较于波动更明显的海表温度,海洋内部保存着更为持久的变暖信号。正如Trenberth在专题前言中所强调的,持续追踪海洋热含量,是认识地球能量失衡和监测长期气候变化的重要途径。
专题全部文章如下:
Tracking OHC Provides Essential Climate Information—Preface to the Special Topic on Ocean Heat Content Changes
Kevin E TRENBERTH
2026, 43(10): 2017-2018. https://doi.org/10.1007/s00376-025-5008-2
Ocean Heat Content Sets Another Record in 2025
Yuying PAN, Lijing CHENG, John ABRAHAM, Kevin E. TRENBERTH, James REAGAN, Juan DU, Zhankun WANG, Andrea STORTO, Karina VON SCHUCKMANN, Yujing ZHU, Michael E. MANN, Jiang ZHU, Fan WANG, Fujiang YU, Ricardo LOCARNINI, John FASULLO, Boyin HUANG, Garrett GRAHAM, Xungang YIN, Viktor GOURETSKI, Fei ZHENG, Yuanlong LI, Bin ZHANG, Liying WAN, Xingrong CHEN, Dakui WANG, Licheng FENG, Xiangzhou SONG, Yulong LIU, Franco RESEGHETTI, Simona SIMONCELLI, Gengxin CHEN, Rongwang ZHANG, Alexey MISHONOV, Wangxu WEI, Zhetao TAN, Guancheng LI, Lijuan CAO, Lifan CHEN, Huifeng YUAN, Kewei LYU, Albertus SULAIMAN, Michael MAYER, Huizan WANG, Zhanhong MA, Senliang BAO, Hengqian YAN, Zenghong LIU, Chunxue YANG, Xu LIU, Zeke HAUSFATHER, Flora GUES, Xinyi SONG, Miao ZHANG, Lin CHEN
2026, 43(10): 2019-2041. https://doi.org/10.1007/s00376-026-5876-0
Spatiotemporal Changes of Ocean Heat Content in the Seas around China
Xu LIU, Licheng FENG, Lijing CHENG, Zhetao TAN, Cuijuan SUI, Chunyang SONG
2026, 43(10): 2042-2060. https://doi.org/10.1007/s00376-025-5018-0
Heat Content Increase of the Tropical Indian Ocean Induced by an Extreme Positive Indian Ocean Dipole
Jing DUAN, Yuanlong LI, Yilong LYU, Fan WANG
2026, 43(10): 2061-2074. https://doi.org/10.1007/s00376-026-5486-x
Persistent Ocean Warming from 2023 to 2024 Set Another Record in the South Pacific
Jianjie FENG, Kewei LYU, Wei ZHUANG, Jianyu HU
2026, 43(10): 2075-2086. https://doi.org/10.1007/s00376-026-5768-3
Sensitivity of Ocean Heating Rate Estimate to Time Series Processing Methods
Jiaxin GUO, Lijing CHENG, Yuying PAN, Huayi ZHENG, Zhaohai MA
2026, 43(10): 2087-2102. https://doi.org/10.1007/s00376-026-5806-1






