利用假设检验回答利益相关者关于海上风电场对海洋生物影响的关键问题,为有针对性的监测提供依据

IF 3.1 2区 农林科学 Q1 FISHERIES ICES Journal of Marine Science Pub Date : 2024-05-11 DOI:10.1093/icesjms/fsae066
Alessandro Cresci, Steven Degraer, Guosong Zhang, Jennifer Dannheim, Howard I Browman
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引用次数: 0

摘要

在安装设施之前,利益相关者需要就海上风电(OW)的环境影响获得科学建议。作为预测海上风电影响的基础,传统环境监测方法的效用有限,因为它们无法解释所观察到的影响的原因。我们提出了一种多步骤方法,该方法基于面向过程的假设检验、有针对性的监测和数值建模,以回答利益相关者提出的有关规划海上风电设施的关键问题:问题 1-我们应将未来的 OW 养殖场置于何处,以最大限度地减少对生态系统的影响?问题 2-哪些物种和生态系统过程会受到影响,影响程度如何?问题 3-我们能否减轻影响,如果可以,如何减轻影响? 问题 4-在一个地点与在另一个地点建立海洋工程设施的风险是什么?假设检验可用于评估海洋工程设施对目标物种-生态过程的影响。这些知识具有可转移性,可广泛应用于先验地评估开放式海洋工程的合适地点(问题 1)。假设检验可与监测方法相结合,以指导有针对性的监测。所生成的知识可确定面临风险的物种/栖息地(问题 2),帮助选择/制定缓解措施(问题 3),并可用作模型的输入参数,以预测大空间尺度的海洋工程影响(问题 1;问题 4)。
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Answering the key stakeholder questions about the impact of offshore wind farms on marine life using hypothesis testing to inform targeted monitoring
Stakeholders need scientific advice on the environmental impacts of offshore wind (OW) before the facilities are installed. The utility of conventional environmental monitoring methods as a basis for forecasting OW impacts is limited because they do not explain the causes of the observed effects. We propose a multistep approach, based on process-oriented hypothesis testing, targeted monitoring and numerical modeling, to answer key stakeholder questions about planning an OW facility: Q1—Where do we place future OW farms so that impacts on the ecosystem are minimized? Q2—Which species and ecosystem processes will be impacted and to what degree? Q3—Can we mitigate impacts and, if so, how? and Q4—What are the risks of placing an OW facility in one location vs. another? Hypothesis testing can be used to assess impacts of OW facilities on target species-ecological process. This knowledge is transferable and is broadly applicable, a priori, to assess suitable locations for OW (Q1). Hypothesis testing can be combined with monitoring methods to guide targeted monitoring. The knowledge generated can identify the species/habitats at risk (Q2), help selecting/developing mitigation measures (Q3), and be used as input parameters for models to forecast OW impacts at a large spatial scale (Q1; Q4).
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来源期刊
ICES Journal of Marine Science
ICES Journal of Marine Science 农林科学-海洋学
CiteScore
6.60
自引率
12.10%
发文量
207
审稿时长
6-16 weeks
期刊介绍: The ICES Journal of Marine Science publishes original articles, opinion essays (“Food for Thought”), visions for the future (“Quo Vadimus”), and critical reviews that contribute to our scientific understanding of marine systems and the impact of human activities on them. The Journal also serves as a foundation for scientific advice across the broad spectrum of management and conservation issues related to the marine environment. Oceanography (e.g. productivity-determining processes), marine habitats, living resources, and related topics constitute the key elements of papers considered for publication. This includes economic, social, and public administration studies to the extent that they are directly related to management of the seas and are of general interest to marine scientists. Integrated studies that bridge gaps between traditional disciplines are particularly welcome.
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