Applied Ocean Physics and Engineering, Woods Hole Oceanographic Institution, Woods Hole, MA 02543, USA.
J Exp Biol. 2012 Mar 15;215(Pt 6):1040-9. doi: 10.1242/jeb.059279.
Recent studies have evoked heated debate about whether biologically generated (or biogenic) fluid disturbances affect mixing in the ocean. Estimates of biogenic inputs have shown that their contribution to ocean mixing is of the same order as winds and tides. Although these estimates are intriguing, further study using theoretical, numerical and experimental techniques is required to obtain conclusive evidence of biogenic mixing in the ocean. Biogenic ocean mixing is a complex problem that requires detailed understanding of: (1) marine organism behavior and characteristics (i.e. swimming dynamics, abundance and migratory behavior), (2) mechanisms utilized by swimming animals that have the ability to mix stratified fluids (i.e. turbulence and fluid drift) and (3) knowledge of the physical environment to isolate contributions of marine organisms from other sources of mixing. In addition to summarizing prior work addressing the points above, observations on the effect of animal swimming mode and body morphology on biogenic fluid transport will also be presented. It is argued that to inform the debate on whether biogenic mixing can contribute to ocean mixing, our studies should focus on diel vertical migrators that traverse stratified waters of the upper pycnocline. Based on our understanding of mixing mechanisms, body morphologies, swimming modes and body orientation, combined with our knowledge of vertically migrating populations of animals, it is likely that copepods, krill and some species of gelatinous zooplankton and fish have the potential to be strong sources of biogenic mixing.
最近的研究引发了激烈的争论,即生物产生的(或生物成因的)流体干扰是否会影响海洋混合。对生物输入的估计表明,它们对海洋混合的贡献与风和潮汐相当。尽管这些估计很有趣,但需要使用理论、数值和实验技术进一步研究,以获得海洋中生物混合的确凿证据。生物海洋混合是一个复杂的问题,需要详细了解:(1)海洋生物的行为和特征(即游泳动力学、丰度和洄游行为),(2)具有混合分层流体能力的游泳动物所利用的机制(即湍流和流体漂移),以及(3)物理环境的知识,以将海洋生物的贡献与其他混合源隔离。除了总结上述观点的先前工作外,还将介绍动物游泳模式和体型对生物流体输运的影响的观测结果。有人认为,为了说明生物混合是否有助于海洋混合的争论,我们的研究应该集中在穿越上斜层的分层水的日垂直迁移动物上。根据我们对混合机制、体型、游泳模式和身体方向的理解,结合我们对垂直迁移动物种群的了解,桡足类、磷虾和一些凝胶状浮游动物和鱼类很可能是生物混合的重要来源。