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首页> 外文期刊>Biogeosciences Discussions >The role of sediment-induced light attenuation on primary production during Hurricane Gustav (2008)
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The role of sediment-induced light attenuation on primary production during Hurricane Gustav (2008)

机译:沉积物诱导光衰减对飓风古斯塔夫初级生产的作用(2008)

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We introduced a sediment-induced light attenuation algorithm into a biogeochemical model of the Coupled Ocean–Atmosphere–Wave–Sediment Transport (COAWST) modeling system. A fully coupled ocean–atmospheric–sediment–biogeochemical simulation was carried out to assess the impact of sediment-induced light attenuation on primary production in the northern Gulf of Mexico during the passage of Hurricane Gustav in 2008. When compared with model results without sediment-induced light attenuation, our new model showed a better agreement with satellite data on both the magnitude of nearshore chlorophyll concentration and the spatial distribution of offshore bloom. When Hurricane Gustav approached, resuspended sediment shifted the inner shelf ecosystem from a nutrient-limited one to a light-limited one. Only 1?week after Hurricane Gustav's landfall, accumulated nutrients and a favorable optical environment induced a posthurricane algal bloom in the top 20m of the water column, while the productivity in the lower water column was still light-limited due to slow-settling sediment. Corresponding with the elevated offshore NO3 flux (38.71mmolNm?1s?1) and decreased chlorophyll flux (43.10mgm?1s?1), the outer shelf posthurricane bloom should have resulted from the cross-shelf nutrient supply instead of the lateral dispersed chlorophyll. Sensitivity tests indicated that sediment light attenuation efficiency affected primary production when sediment concentration was moderately high. Model uncertainties due to colored dissolved organic matter and parameterization of sediment-induced light attenuation are also discussed.
机译:我们将沉积物诱导的光衰减算法介绍成耦合海洋气氛波沉积物(CoAWST)建模系统的生物地球化学模型。进行了全面耦合的海洋大气沉积物 - 生物地球技术模拟,以评估飓风古斯塔夫在2008年飓风古斯塔夫州北湾初级产量的影响。与没有沉积物的模型结果相比 - 诱导光衰减,我们的新模型与近岸叶绿素浓度的幅度和海上绽放的空间分布的卫星数据进行了更好的协议。当飓风古斯塔夫接近时,重悬浮沉积物将内架生态系统从营养物限制为一个光线限制。飓风古斯塔夫登陆后只有1?一周,累积的营养素和良好的光学环境在水柱的顶部20米处诱导泡氨基藻类盛开,而下水柱的生产率仍然是由于缓慢沉降的沉淀而仍然有限。与升高的海上NO3助焊剂(38.71mmolnm?1s?1)相对应(43.10mgm?1s≤1),外部搁板脱硫盛开应该由交叉架营养供应而不是横向分散的叶绿素引起。敏感性试验表明,当沉积物浓度适度高时,沉积物光衰减效率受到初级生产。还讨论了由于有色溶解有机物引起的模型不确定性以及沉积物诱导的光衰减的参数化。

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