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波能转换器对周围软底大型底栖动物的影响(瑞典西海岸)。

Effects of wave energy converters on the surrounding soft-bottom macrofauna (west coast of Sweden).

机构信息

Dept. of Animal Ecology, UU, Norbyvägen 18D, Uppsala, Sweden.

出版信息

Mar Environ Res. 2010 Jun;69(5):374-81. doi: 10.1016/j.marenvres.2010.01.002. Epub 2010 Jan 22.

Abstract

Offshore wave energy conversion is expected to develop, thus contributing to an increase in submerged constructions on the seabed. An essential concern related to the deployment of wave energy converters (WECs) is their possible impact on the surrounding soft-bottom habitats. In this study, the macrofaunal assemblages in the seabed around the wave energy converters in the Lysekil research site on the Swedish west coast and a neighbouring reference site were examined yearly during a period of 5 years (2004-2008). Macrobenthic communities living in the WECs' surrounding seabed were mainly composed by organisms typical for the area and depth off the Swedish west coast. At both sites the number of individuals, number of species and biodiversity were low, and were mostly small, juvenile organisms. The species assemblages during the first years of sampling were significantly different between the Lysekil research site and the nearby reference site with higher species abundance in the research site. The high contribution to dissimilarities was mostly due to polychaetes. Sparse macrofaunal densities can be explained by strong hydrodynamic forces and/or earlier trawling. WECs may alter the surrounding seabed with an accumulation of organic matter inside the research area. This indicates that the deployment of WECs in the Lysekil research site tends to have rather minor direct ecological impacts on the surrounding benthic community relative to the natural high variances.

摘要

海上波浪能转换预计将得到发展,从而导致海底水下建筑的增加。与波浪能转换器 (WEC) 的部署相关的一个重要问题是它们对周围软底生境的可能影响。在这项研究中,在瑞典西海岸 Lysekil 研究地点和附近的一个参考地点的波浪能转换器周围的海底进行了为期 5 年(2004-2008 年)的年度调查。生活在 WEC 周围海底的大型底栖生物群落主要由该地区和瑞典西海岸深度的典型生物组成。在这两个地点,个体数量、物种数量和生物多样性都很低,而且主要是小型幼体生物。在采样的最初几年,Lysekil 研究地点和附近参考地点的物种组合有显著差异,研究地点的物种丰度更高。差异的高贡献主要归因于多毛类动物。稀疏的大型底栖动物密度可以用强大的水动力和/或早期拖网捕捞来解释。WEC 可能会在研究区域内积累有机物,从而改变周围的海底。这表明,与自然高变异性相比,WEC 在 Lysekil 研究地点的部署对周围底栖生物群落的直接生态影响相对较小。

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