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An Adaptive Framework for Selecting Environmental Monitoring Protocols to Support Ocean Renewable Energy Development

机译:选择环境监测协议以支持海洋可再生能源发展的自适应框架

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Offshore renewable energy developments (OREDs) are projected to become common in the United States over the next two decades. There are both a need and an opportunity to guide efforts to identify and track impacts to the marine ecosystem resulting from these installations. A monitoring framework and standardized protocols that can be applied to multiple types of ORED would streamline scientific study, management, and permitting at these sites. We propose an adaptive and reactive framework based on indicators of the likely changes to the marine ecosystem due to ORED. We developed decision trees to identify suites of impacts at two scales (demonstration and commercial) depending on energy (wind, tidal, and wave), structure (e.g., turbine), and foundation type (e.g., monopile). Impacts were categorized by ecosystem component (benthic habitat and resources, fish and fisheries, avian species, marine mammals, and sea turtles) and monitoring objectives were developed for each. We present a case study at a commercial-scale wind farm and develop a monitoring plan for this development that addresses both local and national environmental concerns. In addition, framework has provided a starting point for identifying global research needs and objectives for understanding of the potential effects of ORED on the marine environment.
机译:海上可再生能源发展(OREDS)预计将在未来二十年内在美国变得普遍。有需要和有机会指导努力识别和跟踪由这些装置产生的海洋生态系统的影响。监测框架和标准化协议可以应用于多种类型的ORED将简化科学研究,管理和允许在这些网站上。我们提出了一种基于由于ored造成的海洋生态系统可能变化的指标的自适应和反应框架。我们开发了决策树,以识别两种尺度(演示和商业)的冲击套件,这取决于能量(风,潮汐和波浪),结构(例如涡轮机)和基础类型(例如,单潜行)。通过生态系统组成部分(底栖栖息地和资源,鱼类和渔业,禽类,禽类,海龟)和监测目标进行了分类的影响。我们在商业规模的风电场提出了一个案例研究,制定了解决本地和国家环境问题的发展的监测计划。此外,框架还提供了识别全球研究需求和目标,以了解对海洋环境上的潜在影响的全球研究需求和目标。

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