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Disruption to benthic habitats by moorings of wave energy installations: A modelling case study and implications for overall ecosystem functioning

机译:波浪能装置的系泊对底栖生境的破坏:一个模型案例研究及其对整个生态系统功能的影响

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摘要

This paper presents the research carried out in the marine renewables group of Heriot-Watt University, where the physical models of wave energy converters are first tested in the wave basin, and the results of their behaviour are then compared to the simulations performed using mathematical modelling. An OrcaFlex model is used to assess the scouring effect on bottom sediments and consequent disruption of benthic habitats, and open water tests are being conducted to compare the model performance with the actual observations. The output from OrcaFlex is then imported to Matlab, where the affected area is calculated using the time series of coordinates of touch down points of the mooring lines. The results show that the area of benthic habitats adversely affected by the leading mooring line on a typical wave energy converter (WEC) monotonically increases with the increase in wave height. In regular waves of 6m height and 8s period, the area of benthic habitats adversely affected by the mooring lines may exceed 60m ~2. In addition to the direct effect on benthic habitats, sediment erosion by mooring lines will effect a whole range of ecosystem processes, e.g. due to changes in biogeochemical cycling and light penetration. These issues should be given a due consideration in calculations of ecological risks and EIA of any moored objects.
机译:本文介绍了Heriot-Watt大学海洋可再生能源小组中进行的研究,该研究首先在波浪盆地中测试了波浪能转换器的物理模型,然后将其行为的结果与使用数学模型进行的模拟进行了比较。 。 OrcaFlex模型用于评估对底部沉积物的冲刷作用以及对底栖生境的破坏,并且正在进行开放水测试以将模型性能与实际观测结果进行比较。然后,将OrcaFlex的输出导入到Matlab,在该处,使用系泊缆线触地点的时间坐标来计算受影响的区域。结果表明,典型波浪能转换器(WEC)上受导缆系统不利影响的底栖生境面积随波高的增加而单调增加。在6m高,8s周期的规则波浪中,受系泊缆线不利影响的底栖生境面积可能超过60m〜2。除了对底栖生境的直接影响外,系泊缆对沉积物的侵蚀还将影响整个生态系统过程,例如由于生物地球化学循环和光穿透的变化。在计算生态风险和任何停泊物体的环境影响评估时,应适当考虑这些问题。

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