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Transport and retention of vertically migrating adult mysid and decapod shrimp in the tidal front on Georges Bank

机译:在Georges Bank的潮汐前线上运输和保留垂直迁移的成年迷s和十足类成年虾

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Vertical profiles of the adult epibenthic shrimp Neomysis americana and Crangon septemspinosus obtained during June 1985 were used to simulate possible rates of ascent from bottom (40 to 50 m) to near surface at night and return by day, and the consequence of these rates on their horizontal distribution. Numerical particles were released at the sampling site using archived model current fields with specified vertical rates (from no swim behavior to 20 mm s~(-1)) and tracked for up to 30 d. The best match between observed and modeled vertical profiles was with a vertical swimming speed of 10 mm s~(-1) for N. americana and 2 mm s~(-1) for C. septemspinosus. Whereas N. americana rapidly swims towards the surface at dusk and descends to bottom by dawn, C. septemspinosus tends to only swim up to the middle of the water column at night. After 16 d, the simulation with 10 mm s~(-1) swim speed showed most particles were concentrated in an area centered around the 60 m isobath, where the tidal front was located. At 2 mm s~(-1) swim speed particles were concentrated more shoalward onto the western end of Georges Bank. N. americana are expected to be more closely associated with the tidal front, since they spend more time near the front surface convergence, but are more likely to be transported off the bank due to the south-westward-flowing surface tidal jet, whereas C. septemspinosus would be retained primarily on the bank, since they are found deeper in the water column during both day and night.
机译:1985年6月获得的成年表皮虾美国线虫(Neomysis americana)和克朗贡鱼(Crangon septemspinosus)的垂直剖面用于模拟夜间从底部(40至50 m)到近地表的上升速率,以及白天返回的速率,以及这些速率对它们的影响。横向分布。使用指定的垂直速率(从无游动行为到20 mm s〜(-1)),使用已归档的模型电流场在采样点释放数值粒子,并跟踪长达30 d。观察到的和模拟的垂直剖面之间的最佳匹配是,对于美国猪笼草,垂直游动速度为10 mm s〜(-1),而对于南美白对虾,其垂直游动速度为2 mm s〜(-1)。美洲猪笼草在黄昏时会迅速向水面游动,并在黎明时下降到底部,而七叶锦梭鱼在晚上往往只游至水柱中间。 16 d后,以10 mm s〜(-1)的游泳速度进行的模拟显示,大多数粒子集中在以潮汐锋位于的60 m等深线为中心的区域。在2 mm s〜(-1)的游泳速度下,粒子更向浅滩集中到Georges Bank的西端。美洲猪笼草与潮汐锋面的联系更为紧密,因为它们在前表面辐合附近花费更多的时间,但由于西南潮汐水面的潮汐射流,它们更可能被带离岸外,而C Sepeptspinosus将主要保留在河岸上,因为白天和黑夜它们都在水柱中被发现得较深。

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