Kim Yong Sun, Seok Soo-Hyun, Lee Jae-Ho, Kim Sung-Dae
Ocean Circulation and Climate Research Department, Korea Institute of Ocean Science and Technology, Busan, 49111, South Korea.
Department of Oceanography, University of Science and Technology, Daejeon, 34113, South Korea.
Sci Data. 2025 Feb 4;12(1):206. doi: 10.1038/s41597-025-04543-6.
This study describes a monthly Atlas for the Northeast Asian Seas 2023 (ANAS23) with a 1/10° horizontal resolution and 73 vertical levels. For ANAS23, over 1.6 million hydrographic profiles were analyzed, utilizing a simple kriging interpolation technique, which considers data density and their covariance at each grid point, along with a profile stabilizing method to minimize damage to water-mass structures. Comparison of ANAS23 with previously published atlases, repeated sectional observations, and satellite-based geostrophic current fields reveals that the ANAS23 provides reliable descriptions of the spatial distribution of water masses, currents, thermohaline fronts, and mesoscale eddies while avoiding spike-shape noises, vertical instabilities, and artificial waters, particularly over large-topographic features. The ANAS23 could be utilized as a baseline to assess the dynamic state of climatological mean fields and their changes under evolving climates. The fact that uncertainty among atlases is still apparent, particularly in a region of scarce observations, calls for a collaborative international effort to collect qualified hydrographic observations for a better-performing regional atlas, thus improving predictive skills for future climate.
本研究描述了《2023年东北亚海洋地图集》(ANAS23),其水平分辨率为1/10°,垂直层数为73层。对于ANAS23,分析了超过160万个水文剖面,采用了简单克里金插值技术,该技术考虑了每个网格点的数据密度及其协方差,同时采用了剖面稳定方法,以尽量减少对水团结构的破坏。将ANAS23与先前发布的地图集、重复的断面观测以及基于卫星的地转流场进行比较后发现,ANAS23能够可靠地描述水团、洋流、温盐锋和中尺度涡旋的空间分布,同时避免尖峰状噪声、垂直不稳定和人工水体,特别是在大型地形特征区域。ANAS23可作为评估气候平均场动态状态及其在气候变化下变化情况的基线。地图集之间的不确定性仍然很明显,特别是在观测稀少的区域,这一事实要求开展国际合作,收集合格的水文观测数据,以制作性能更好的区域地图集,从而提高对未来气候的预测能力。