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Spatial Circulation Patterns Over Palmer Deep Canyon and the Effects on Adelie Penguin Foraging

机译:帕尔默深峡谷的空间循环模式和对阿德利企鹅觅食的影响

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Project CONVERGE, funded by the National Science Foundation Office of Polar Programs, is deploying a coordinated ocean observing network to better understand ecological connections along the Western Antarctic Peninsula (WAP). Partners from Rutgers University, the University of Alaska, Fairbanks (UAF), Oregon State University, the University of Delaware, and the Polar Oceans Research Group deployed a multiplatform-observing network that includes gliders, animal telemetry, active acoustics for zooplankton distributions, and CODAR High Frequency Radar (HFR). The three-site network was deployed in November of 2014 and provided hourly surface current maps through the following austral summer. This study targets data collected between January and February 2015. Here we focus on Palmer Deep eddy and the tidal currents as they transition from diurnal to semi-diurnal regimes throughout the study period. These data are helping us better understand the links between alternating tidal regimes and the foraging behavior of the local Adelie penguin populations. This analysis has further implications for future research as the region goes through dramatic climate change.
机译:项目汇合由国家科学基金会办公室资助的极地计划,正在部署协调海洋观测网络,以更好地了解西南南极半岛(WAP)的生态联系。 Rutgers大学,阿拉斯加大学,费尔班克斯(UAF),俄勒冈大学,俄勒冈大学,俄勒冈大学,北洋海洋研究小组部署了一个多层形观察网络,包括滑翔机,动物遥测,浮游动物分布的主动声学,以及密码高频雷达(HFR)。三个网站网络于2014年11月部署,并通过以下澳大利亚夏季提供了每小时表面目前地图。这项研究针对2015年1月至2月至2015年2月之间收集的数据。在这里,我们专注于帕尔默的深度涡流和潮流,因为它们在整个研究期间从昼夜转变为半昼夜制度。这些数据有助于我们更好地了解交替的潮汐制度与当地阿德利企鹅群体的觅食行为之间的联系。由于该地区经历了巨大的气候变化,这种分析对未来的研究具有进一步的影响。

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