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首页> 外文期刊>Marine ecology progress series >Floating and fixed artificial habitats: effects of substratum motion on benthic communities in a coral reef environment
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Floating and fixed artificial habitats: effects of substratum motion on benthic communities in a coral reef environment

机译:漂浮和固定的人工栖息地:在珊瑚礁环境中地下运动对底栖生物的影响

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摘要

Despite the proliferation in coastal development world-wide little is known of the biological and ecological effects of man-made submerged habitats in coastal reefal environments. Such habitats, when able to move, offer unique environmental conditions, mainly in terms of hydro-dynamic aspects. The current study tested whether floating habitats would develop unique communities in comparison to identical fixed ones, due to differences in current regime between the 2 types of habitat. We found significant differences in the hydrodynamic features associated with habitats of different motion capabilities, predominantly in mass-transfer rate, current velocity and shear stress. Floating installations had greater flow velocities and shear stress compared to fixed ones. We suggest that these hydrodynamic features determine the nature of the benthic communities on floating and fixed habitats, as the former revealed greater biomass and less chlorophyll content compared to the latter, while coral settlement was greater on the fixed installations, particularly near the seabed. The motion of floating artificial habitats increased the mass-transfer rate, as reflected by higher current velocities, and elevated the shear stress felt on their surfaces. These conditions encourage massive settlement of benthic macroinvertebrates and determine the community structure of floating artificial habitats in reefal environments.
机译:尽管全世界沿海地区发展迅速,但人们对沿海暗礁环境中人工淹没栖息地的生物和生态影响知之甚少。这些栖息地能够移动时,会提供独特的环境条件,主要是在水动力方面。当前的研究测试了由于两种生境之间当前制度的差异,与相同的固定生境相比,漂浮生境是否会形成独特的群落。我们发现与运动能力不同的栖息地相关的水动力特征存在显着差异,主要表现在传质速率,流速和剪切应力方面。与固定装置相比,浮动装置的流速和剪切应力更大。我们建议这些水动力特征决定了漂浮和固定生境上底栖动物群落的性质,因为与后者相比,前者显示出更大的生物量和更少的叶绿素含量,而在固定装置上,尤其是在海床附近,珊瑚的沉降更大。流动的人工生境的运动增加了传质速率,这反映在更高的流速上,并提高了它们表面上感受到的剪切应力。这些条件促进了底栖大型无脊椎动物的大量沉积,并决定了珊瑚礁环境中漂浮的人工生境的群落结构。

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