自主水下滑翔机观测南安大略湖和尼亚加拉河羽流

P. McKinney, T. Hollenhorst, J. Hoffman
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引用次数: 1

摘要

劳伦森五大湖的近岸地区提供了宝贵的生态系统服务,包括各种物种的栖息地和周围社区的水。最近近岸水质的下降增加了了解近岸和近海地区之间连通性的需求;然而,在近岸到近海的动态过渡区观测水质变化给传统观测系统带来了后勤方面的挑战。在这里,我们利用在南安大略湖部署的两个为期三周的Slocum自动滑翔机的观测结果来评估跨岸和沿岸水质梯度。该滑翔机于2018年夏初和夏末部署在尼亚加拉河口和纽约州罗切斯特之间,每次部署都会产生3000多个水柱垂直剖面和距离海岸2公里至20公里之间的几个横断面。初夏时,跨岸叶绿素梯度在靠近海岸的弱分层条件和靠近海岸的无分层条件之间的锋区,在水面以下最高。在夏末,分层状况扩展到整个调查区域。与近海相比,近海10 km范围内的温跃层深度更深,叶绿素值也较低,且在温跃层以下的特定层中叶绿素值最高。在夏初和夏末,由跨岸叶绿素梯度指示的锋面边界位于通常被认为是近岸带的海面以下,但在海岸边界层的宽度范围内。高分辨率的滑翔机观测提供了动态海岸带变化模式的详细视图,并确定了对生物学家区分生物群落可能很重要的跨海岸锋面边界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Autonomous underwater glider observations in southern Lake Ontario and Niagara River plume
The nearshore areas of the Laurentian Great Lakes provide valuable ecosystem services including habitat for a variety of species and water for surrounding communities. Recent declines in nearshore water quality have increased the need for understanding the connectivity between nearshore and offshore areas; however observing water quality variability across the dynamic nearshore to offshore transition zone poses logistical challenges for traditional observing systems. Here we evaluate cross-shore and along-shore water quality gradients using observations from two three-week deployments of a Slocum autonomous glider in southern Lake Ontario. The glider was deployed between the Niagara River mouth and Rochester, NY during early and late summer 2018, and each deployment resulted in over 3000 vertical profiles of the water column and several transects between 2 km and 20 km from shore. In early summer, the cross-shore chlorophyll gradient was characterized by highest values just below the surface, at the frontal zone between weakly stratified conditions closer to shore and unstratified conditions offshore. In late summer, stratified conditions extended across the entire survey area. The depth of the thermocline was deeper and chlorophyll values were lower within 10 km of shore than offshore, where the highest chlorophyll values were observed in a distinct layer below the thermocline. In both early and late summer, the frontal boundary indicated by the cross-shore chlorophyll gradient was located below the surface and well offshore of what is typically considered the nearshore zone but was within the width of the coastal boundary layer. The high-resolution glider observations provide a detailed view of patterns of variability across a dynamic coastal zone and pinpoint the cross-shore frontal boundary that may be important for biologists to differentiate biological communities.
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