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Sensitivity of ocean carbon tracer distributions to particulate organic flux parameterizations

机译:海洋碳示踪剂分布对颗粒有机通量参数化的敏感性

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[ 1] Vertical fluxes of particulate organic carbon (POC) from the euphotic zone to the deep sea are an important part of the carbon cycle in the oceans. In this study, oceanic fluxes of POC below the euphotic zone were simulated with the Hamburg ocean carbon cycle model (HAMOCC5.1) by using different POC-flux parameterizations and compared with sediment trap data. Overall, the geochemical distributions in the deep sea showed a high sensitivity to the selection of POC flux parameterization. Below 2000 m in the oceans, differences between simulated and observed carbon tracers (PO4, Alk*) and model-data differences of POC fluxes are lowest when a regionally variable POC flux parameterization is used. Specifically, model-data differences are lowest in the subtropics when simulated vertical POC flux considers mineral ballasting, while they are lowest in the Arabian Sea and west coast of Africa when a mineral dust parameterization is used for the vertical POC flux.
机译:[1]从富营养区到深海的颗粒有机碳(POC)的垂直通量是海洋碳循环的重要组成部分。在这项研究中,通过使用不同的POC通量参数化,使用汉堡海洋碳循环模型(HAMOCC5.1)模拟了富营养区以下POC的海洋通量,并与沉积物陷阱数据进行了比较。总体而言,深海中的地球化学分布显示出对POC通量参数化选择的高度敏感性。在海洋中低于2000 m时,使用区域变量POC通量参数化时,模拟和观察到的碳示踪剂(PO4,Alk *)之间的差异以及POC通量的模型数据差异最低。具体来说,当模拟垂直POC通量考虑矿物压载时,模型数据差异在亚热带地区最低,而当将矿物粉尘参数化用于垂直POC通量时,模型数据差异在阿拉伯海和非洲西海岸最低。

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