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Mesoscale and submesoscale mechanisms behind asymmetric cooling and phytoplankton blooms induced by hurricanes: a comparison between an open ocean case and a continental shelf sea case

机译:飓风引起的不对称冷却和浮游植物水华背后的中尺度和亚中尺度机制:开放海洋案例与大陆架海案例的比较

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摘要

Right-side bias in both sea surface cooling and phytoplankton blooms is often observed in the wake of hurricanes in the Northern Hemisphere. This idealized hurricane modeling study uses a coupled biological-physical model to understand the underlying mechanisms behind hurricane-induced cooling and phytoplankton bloom asymmetry. Both a deep ocean case and a continental shelf sea case are considered and contrasted. Model analyses show that while right-side asymmetric mixing due to inertial oscillations and restratification from strong right-side recirculation cells contributes to bloom asymmetry in the open ocean, the well-mixed condition in the continental shelf sea inhibits formation of recirculation cells, and the convergence of water onto the shelf is a more important process for bloom asymmetry.
机译:在北半球飓风过后,经常在海面冷却和浮游植物开花方面出现偏见。这项理想的飓风建模研究使用耦合的生物物理模型来了解飓风诱发的降温和浮游植物水华不对称背后的潜在机制。深海案例和大陆架海案例都被考虑和对比。模型分析表明,尽管由于惯性振荡和右侧强回流单元的再定律而引起的右侧不对称混合有助于在开阔海洋中引起水华不对称,但大陆架海的充分混合条件会抑制再循环单元的形成,并且对于水华不对称,水收敛到架子上是一个更重要的过程。

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