首页> 外文会议>IEEE/OES Acoustics in Underwater Geosciences Symposium >Response of zooplankton abundance to internal motions and a glacial lake outburst flood in a Patagonian fjord: Zooplankton abundance in Patagonian
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Response of zooplankton abundance to internal motions and a glacial lake outburst flood in a Patagonian fjord: Zooplankton abundance in Patagonian

机译:巴塔哥尼亚峡湾浮游动物的丰度对内部运动和冰川湖爆发洪水的响应:巴塔哥尼亚的浮游动物的丰度

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Volume backscatter (Sv) derived from an acoustic profiler was used to explore the response of zooplankton abundance to a glacial lake outburst flood (GLOF) and to periodic deepening of the stratified layer in a Patagonia fjord. River discharge during the GLOF increased almost three-fold from 770 m3/s to 2200 m3/s. This pulse enhanced the gravitational circulation and affected the horizontal advective fluxes of plankton. The maximum backscatter was found both during the GLOF and in late winter to early spring of 2010. The backscatter increase in late winter and spring corresponded to multiple zooplankton species found from in-situ net sampling. In addition, diel vertical migrations were found during this seasonal increase both qualitatively and in spectral analysis. Concurrently with zooplankton increases, wind forcing produced a deepening/shallowing of the pycnocline. Zooplankton abundance was at its peak in the fjord during the pycnocline departures and throughout the entire spring season, indicating that mixing conditions could favor secondary production. Eddy diffusivity (kv = 0.8???10"4 m2/s) was found in a shear layer (20 m depth) with a Richardson number of 0.8, denoting a potential for advective instabilities to occur during spring. Recently collected data (2014) shows a similar fjord response to another GLOF event.
机译:来自声廓线仪的体积反向散射(Sv)用于探索浮游生物的丰度对冰川湖爆发洪水(GLOF)的响应以及对巴塔哥尼亚峡湾中分层层的周期性加深的响应。 GLOF期间的河流量从770 m3 / s增加到2200 m3 / s,几乎增加了三倍。该脉冲增强了重力循环并影响了浮游生物的水平对流通量。在GLOF期间和冬季末至2010年春季初均发现了最大的反向散射。冬季末和春季的反向散射增加对应于从原位净采样中发现的多种浮游动物种类。此外,在此季节增加中,在质和光谱分析中都发现了diel垂直迁移。在浮游动物增加的同时,强迫风使碧萝oc加深/变浅。碧容湖出发期间和整个春季,浮游动物的丰度都达到了峰值,这表明混合条件可能有利于次生生产。在理查森数为0.8的剪切层(深度为20 m)中发现了涡流扩散率(kv = 0.8 ??? 10“ 4 m2 / s),这表明春季期间对流不稳定的可能性。最近收集的数据(2014年) )显示了对另一个GLOF事件的相似峡湾响应。

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