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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Modelling of the seasonal patterns of dimethylsulphide production and fate during 1989 at a site in the North Sea
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Modelling of the seasonal patterns of dimethylsulphide production and fate during 1989 at a site in the North Sea

机译:1989年北海某地点二甲基硫的生产和命运季节性模式的模拟

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摘要

This modelling study aimed to extend our understanding of the biogeochemistry of the climatically active gas dimethylsulphide (DMS) in marine surface waters to an annual cycle. Processes involved in the production and fate of DMS and its precursor beta-dimethylsulphoniopropionate (DMSP), a product of phytoplankton synthesis, were incorporated into a complex, coupled one-dimensional physical ecosystem model (European Regional Seas Ecosystem Model (ERSEM) and the General Ocean Turbulence Model (GOTM)) to create a model of DMS biogeochemistry at a seasonally stratified site in the North Sea for 1989. The model was validated against nutrient concentrations, biological standing stocks, biological production, DMS and DMSP concentrations, and DMS sea to air flux determined throughout 1989 during the North Sea Project. The validation results demonstrated that complex ecosystem models, combined with a comprehensive network of processes that control the production and fate of DMSP and DMS, could accurately mimic DMS biogeochemistry. The model provides insights into the impact of seasonally changing physical forcing on the relative contribution of individual processes to DMS production and sea to air flux.
机译:这项建模研究旨在将我们对海洋地表水中气候活性气体二甲基硫化物(DMS)的生物地球化学的了解扩展到一年一度的周期。 DMS及其前体β-二甲基磺基丙酸酯(DMSP)(浮游植物合成的产物)的生产和命运的过程被整合到一个复杂的,耦合的一维物理生态系统模型(欧洲区域海洋生态系统模型(ERSEM)和通用海洋湍流模型(GOTM)),以在1989年的北海季节性分层地点创建DMS生物地球化学模型。该模型针对营养物浓度,生物存量,生物产量,DMS和DMSP浓度以及DMS到海在1989年北海计划期间确定的空气通量。验证结果表明,复杂的生态系统模型与控制DMSP和DMS的生产和命运的全面过程网络相结合,可以准确地模拟DMS生物地球化学。该模型提供了有关季节性变化的物理强迫对单个过程对DMS生产和海空通量的相对贡献的影响的见解。

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