Purwandana Adi, Cuypers Yannis, Bouruet-Aubertot Pascale, Nagai Taira, Hibiya Toshiyuki, Atmadipoera Agus S
Laboratoire d'Océanographie et de Climatologie par Expérimentation et Approche Numérique (LOCEAN), Sorbonne Université, Paris, France.
Research Center for Oceanography, Indonesian Institute of Sciences (RCO-LIPI), Jakarta, Indonesia.
Data Brief. 2020 Apr 17;30:105519. doi: 10.1016/j.dib.2020.105519. eCollection 2020 Jun.
In this article, we present the datasets which are used to estimate the turbulent kinetic energy dissipation rates and vertical diffusivity in the Indonesian seas. An archived CTD (conductivity, temperature, depth) datasets collected between 1990 and 2016 with 1 m vertical resolution is presented and analyzed using an improved Thorpe method. The direct estimates dataset of the dissipation rate from two research expeditions, i.e., INDOMIX Program in 2010 and TOMTOM Program in 2015 were also presented, available to be compared with the indirect estimates from CTD profiles. We also present the dissipation rate output of three recent regional internal tide models in the Indonesian seas for comparison with microstructure measurements and improved Thorpe estimates. The datasets refer to "Spatial structure of turbulent mixing inferred from historical CTD datasets in the Indonesian seas" [1].
在本文中,我们展示了用于估算印度尼西亚海域湍流动能耗散率和垂直扩散率的数据集。展示了一个1990年至2016年期间收集的存档CTD(电导率、温度、深度)数据集,其垂直分辨率为1米,并使用改进的索普方法进行了分析。还展示了两次研究考察(即2010年的INDOMIX计划和2015年的TOMTOM计划)的耗散率直接估算数据集,可用于与CTD剖面的间接估算值进行比较。我们还展示了印度尼西亚海域最近三个区域内潮模型的耗散率输出,以便与微观结构测量结果和改进的索普估算值进行比较。这些数据集参考了《从印度尼西亚海域历史CTD数据集中推断出的湍流混合空间结构》[1]。