Coral Community Metabolism Data From the Palmyra Atoll, from 2012-08-01 to 2012-10-01 (NODC Accession 0121946)
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All data files are in MATLAB format. If you require a different data format, please contact dkoweek@stanford.edu to discuss your data needs. 1. Physical oceanographic data from Eulerian measurements at the SIB site (data in Fig. 3 of the paper) 2. Biogeochemical data from Eulerian measurements at the SIB site (data in Fig. 4 of the paper) 3. Metabolic rate data (NCC, NCP) from Lagrangian and Eulerian methods along with associated environmental and ecological conditions (data in Figs. 2, 5, and 6 of the paper). This data was collected as part of "Observations and Modeling of C System Dynamics at Palmyra Atoll: In Support of the Development of Management Strategies for Ocean Acidification Impacts in the Tropics", a proposal by Robert Dunbar (Stanford University) and Jennifer Smith (Scripps Insitution of Oceanography) funded by the Gordon and Betty Moore Foundation. The goal of this project was to better understand the carbonate chemistry and community metabolism of a relatively undisturbed, isolated Pacific coral reef in order to better understand and anticipate how coral reef ecosystem function may change with ocean acidification.
所有数据文件均采用MATLAB格式。若需其他格式的数据,请联系dkoweek@stanford.edu洽谈数据需求。 1. 取自SIB站点欧拉式观测的物理海洋学数据(对应论文图3所载数据) 2. 取自SIB站点欧拉式观测的生物地球化学数据(对应论文图4所载数据) 3. 采用拉格朗日与欧拉方法获取的代谢速率数据(涵盖净群落钙化(Net Community Calcification, NCC)与净群落生产力(Net Community Production, NCP))及相关环境与生态条件数据(对应论文图2、5、6所载数据)。 本数据集源自斯坦福大学Robert Dunbar与斯克里普斯海洋研究所Jennifer Smith联合提交、戈登与贝蒂·摩尔基金会资助的研究提案《帕尔米拉环礁碳系统动态观测与模拟:助力热带海洋酸化影响管理策略制定》。该项目旨在深入探究一处相对未受干扰、与世隔绝的太平洋珊瑚礁的碳酸盐化学与群落代谢机制,以明晰并预判珊瑚礁生态系统功能随海洋酸化的变化趋势。



