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Miniaturized data loggers and computer programming improve seabird risk and damage assessments for marine oil spills in Atlantic Canada

机译:微型数据记录器和计算机编程改善了加拿大大西洋海洋石油泄漏的海鸟风险和损害评估

摘要

Obtaining useful information on marine birds that can aid in oil spill (and other hydrocarbon release) risk and damage assessments in offshore environments is challenging. Technological innovations in miniaturization have allowed archival data loggers to be deployed successfully on marine birds vulnerable to hydrocarbons on water. A number of species, including murres (both Common, Uria aalge, and Thick-billed, U. lomvia) have been tracked using geolocationuddevices in eastern Canada, increasing our knowledge of the seasonality and colony-specific nature of their susceptibility to oil on water in offshore hydrocarbon production areas and major shipping lanes. Archival data tags are starting to resolve questions around behaviour of vulnerable seabirds at small spatial scales relevant to oil spill impact modelling, specifically to determine the duration and frequency at which birds fly at sea. Advances in data capture methods using voice activated software have eased the burden on seabird observers who are collectingudincreasingly more detailed information on seabirds during ship-board and aerial transects. Computer programs that integrate seabird density and bird behaviour have been constructed, all with a goal of creating more credible seabird oil spill risk and damage assessments. In this paper, we discuss how each of these technological and computing innovations can help define critical inputs into seabird risk and damage assessments, and when combined, can provide a more realistic understanding of the impacts to seabirds from any hydrocarbon release.
机译:获取有关海洋鸟类的有用信息,以帮助其在近海环境中进行溢油(和其他碳氢化合物释放)风险和损害评估,这具有挑战性。小型化方面的技术创新使档案数据记录器可以成功部署在易受水上碳氢化合物影响的海鸟身上。在加拿大东部,使用地理定位 uddevice追踪了包括murre(普通,Uria aalge和Thick-billed,U。lomvia)在内的许多物种,从而增加了我们对季节性和特定群体对油的敏感性的认识。在海上碳氢化合物生产区和主要运输通道的水上使用。档案数据标签开始解决有关脆弱海鸟在小范围尺度上与漏油影响建模有关的问题,特别是确定鸟类在海上飞行的持续时间和频率。使用语音激活软件的数据捕获方法的进步减轻了海鸟观察者的负担,他们在船上和空中横断面上收集越来越多的有关海鸟的详细信息。已经构建了整合海鸟密度和鸟类行为的计算机程序,所有这些程序的目标都是创建更加可信的海鸟溢油风险和损害评估。在本文中,我们将讨论这些技术和计算创新中的每一项如何帮助定义海鸟风险和损害评估的关键输入,并结合起来使用,可以更真实地了解任何碳氢化合物释放对海鸟的影响。

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