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Role of vertical migration in biogenic ocean mixing

机译:垂直迁移在生物海洋混合中的作用

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摘要

Recent efforts to empirically measure and numerically simulate biogenic ocean mixing have consistently observed low mixing efficiency. This suggests that the buoyancy flux achieved by swimming animals in the ocean may be negligible in spite of the observed large kinetic energy dissipation rates. The present letter suggests that vertical migration across isopycnals may be necessary in order to generate overturning and subsequent mixing at length scales significantly larger than the individual animals. The animal-fluid interactions are simulated here using a simplified potential flow model of solid spheres migrating vertically in a stably stratified fluid. The interaction of successive solid bodies with each parcel of fluid is shown to lead, under certain conditions, to vertical displacement of the fluid parcels over distances much larger than the individual body size. These regions of displaced fluid are unstably stratified and, hence, amenable to large-scale overturning and efficient mixing.
机译:最近的经验测量和数值模拟生物海洋混合的努力一直观察到混合效率低。这表明尽管观察到较大的动能耗散率,但在海洋中游泳的动物获得的浮力通量还是可以忽略不计的。本信暗示,为了产生倾覆和随后的混合,其长度比例明显大于单个动物,可能有必要跨同工质进行垂直迁移。这里使用简化的在稳定分层流体中垂直移动的固体球体的潜在流动模型来模拟动物-流体的相互作用。在某些条件下,连续的固体与每个流体的相互作用显示出导致流体的垂直位移超过了单个物体的大小。这些置换流体区域不稳定地分层,因此适合大规模倾覆和有效混合。

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