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首页> 外文期刊>Ecological indicators >Fine-scale hydrodynamic metrics underlying predator occupancy patterns in tidal stream environments
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Fine-scale hydrodynamic metrics underlying predator occupancy patterns in tidal stream environments

机译:潮汐流环境中捕食者占用模式的精细尺度水动力指标

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摘要

Whilst the development of the tidal stream industry will help meet marine renewable energy (MRE) targets, the potential impacts on mobile marine predators using these highly dynamic environments need consideration. Environmental impact assessments (EIAs) required for potential MRE sites generally involve site-specific animal density estimates obtained from lengthy and costly surveys. Recent studies indicate that whilst large-scale tidal forcing is predictable, local hydrodynamics are variable and often result in spatio-temporal patchiness of marine predators. Therefore, understanding how fine-scale hydrodynamics influence animal distribution patterns could inform the placing of devices to reduce collision and displacement risks. Quantifying distributions requires animal at-sea locations and the concurrent collection of high-resolution hydrodynamic measurements. As the latter are routinely collected during tidal resource characterization at potential MRE sites, there is an untapped opportunity to efficiently collect information on the former to improve EIAs. Here we describe a survey approach that uses vessel-mounted ADCP (Acoustic Doppler current profiler) transects in combination with marine mammal surveys to collect high-resolution and concurrent hydrodynamic data in relation to pinniped (harbour sealsPhoca vitulina, grey sealsHalichoerus grypus) at-sea occupancy patterns within an energetic tidal channel (peak current magnitudes >4.5 ms−1). We identified novel ADCP-derived fine-scale hydrodynamic metrics that could have ecological relevance for seals using these habitats. We show that our local acoustic backscattering strength metric (an indicator for macro-turbulence) had the highest influence on seal encounters. During peak flows, pinnipeds avoided the mid-channel characterized by extreme backscatter. At-sea occupancy further corresponded with the increased shear and eddies that are strong relative to the mean flows found at the edges of the channel. Our approach, providing oceanographic context to animal habitat use through combined survey methodologies, enhances environmental management of potential MRE sites. The cost-effective collection of such data and the application of our metrics could streamline the EIA process in the early stages of the consenting process.
机译:潮流产业的发展将有助于实现海洋可再生能源(MRE)的目标,但需要考虑使用这些高度动态环境对移动海洋捕食者的潜在影响。潜在的MRE场所所需的环境影响评估(EIA)通常涉及从冗长而昂贵的调查中获得的特定场所的动物密度估计。最近的研究表明,虽然大规模的潮汐强迫是可以预测的,但局部流体动力学是可变的,并且经常导致海洋捕食者的时空斑驳。因此,了解精细的水动力如何影响动物的分布方式可以告知设备放置的位置,以减少碰撞和移位的风险。量化分布需要动物在海上的位置并同时收集高分辨率水动力测量值。由于后者是在潜在的MRE站点进行潮汐资源表征期间常规收集的,因此有一个未开发的机会可以有效收集有关前者的信息以改善EIA。在这里,我们描述了一种调查方法,该方法将船载ADCP(声学多普勒电流剖面仪)样线与海洋哺乳动物调查相结合,以收集与针刺(海豹,海豹,灰海豹,海lic)有关的高分辨率和并行流体力学数据。潮汐通道内的占用模式(峰值电流幅度> 4.5 ms-1)。我们确定了新的ADCP衍生的精细尺度水动力指标,这些指标可能对使用这些栖息地的海豹具有生态意义。我们表明,我们的局部声学反向散射强度指标(宏观湍流指标)对海豹遭遇的影响最大。在峰流量期间,夹点会避免以反向散射为特征的中间通道。相对于在通道边缘发现的平均流量,在海上的占用进一步对应于增加的剪切力和涡流。我们的方法通过联合调查方法为动物栖息地的使用提供海洋环境,从而加强了对潜在地雷危害教育地点的环境管理。此类数据的经济有效收集和我们指标的应用可以在同意流程的早期阶段简化EIA流程。

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