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Restoring a Nearshore Rocky Reef Ecosystem the Challenge of an Urban Setting

机译:恢复近岸洛基礁生态系统的城市环境的挑战

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The subtidal rocky reefs that surround the Palos Verdes Peninsula in Los Angeles County, California, USA are subject to multiple anthropogenic impacts, including many (at least partially) human-induced landslides over the past half century, which haveresulted in chronic sedimentation (e.g., reef burial and scour) and associated turbidity effects along a major stretch of this coastline. The amount of rocky reef habitat has signifi-candy decreased; as such, determining the optimum technique for restoring this lost habitat is the focus of this study. Over the past decade, we mapped and intensively surveyed the nearshore physical and biological characteristics both inside this impacted area and in surrounding reference areas that contain extensive rocky reef habitat with established kelp forests. Notable among all survey locations is a relatively high-relief (~5 m) area of reef within the sediment impacted area that consistently has the highest fish bio-mass density among anywhere on the peninsula. The high structural relief prevents sediment accumulation, scour, and subsequent reef burial, and this reef ultimately served as the example for the design of sets of quarry rock reef "blocks" that together form the proposed restoration reef. Our primary objective was to use the 63,500 metric tons of quarry rock the budget would allow us to create the most productive habitat by restoring the natural reef environment while balancing scientific study design considerations (i.e., replicated reef components at multiple spatial scales) with maximizing the potential for an effective restoration effort across the range of important species and overall kelp forest biodiversity. To meet this objective, we considered multiple criteria that incorporated engineeringspecifications and biological performance and were informed by the scientific literature and results of natural and artificial reef surveys in this region. Ultimately, the design incorporated heterogeneity7 at multiple spatial scales while attempting tomaximize high relief components, surface area to volume ratio, perimeter, ecotones, and small-scale current flow features and nutrient flux and while being consistent with the size of natural reefs along the Palos Verdes Peninsula. Further, placement and spacing of individual reef blocks (i.e., 2 x 48 m heterogeneous quarry rock reefs) included space for sand channels between blocks to permit sediment transport and create sand/rock ecotone habitats while remaining close enough to each other and existing natural reefs to maintain biological connectivity. Reef blocks were also located at the depth (15-20 m) where the most productive reef habitat in the region was observed. Finally, we discuss a proposed pre- and post-construction monitoring program andadditional studies that could be performed that would leverage the replicated elements in the restoration reef design to inform future reef restoration programs.
机译:环绕洛斯维第斯半岛在洛杉矶县,加州潮下岩礁,美国受到多重人为影响,包括许多(至少部分地)人类活动引起的,在过去的半个世纪里,这haveresulted慢性沉淀滑坡(如,礁埋藏和冲刷),并沿着这条海岸线是个大问题相关的浊度的影响。岩石礁栖息地的量具有signifi糖果下降;如这样,在确定用于恢复丢失的这个栖息地的最佳技术是本研究的焦点。在过去的十年中,我们映射和深入调查都在这里面受影响区域及周边包含既定的海带森林广泛的礁石栖息地参照区近岸物理和生物特性。所有调查地点中,值得注意的是珊瑚礁的沉积物影响地区,始终对朝鲜半岛的任何地方中最高的鱼生物质密度中的相对高浮雕(约5米)的区域。高结构浮雕防止泥沙淤积,冲刷,及随后的礁掩埋,并且这最终礁担任的套采石场岩石礁“块”,它们一起形成所提出的恢复礁的设计的例子。我们的主要目标是使用63,500公吨采石场岩体的预算将允许我们通过恢复自然礁环境中创造最有生产力的栖息地,同时平衡科学研究设计考虑(即,在多个空间尺度复制礁组件)与最大化潜在的跨越重要物种和整体海带森林生物多样性的范围内的有效恢复精力。为了实现这一目标,我们认为多重标准,纳入engineeringspecifications和生物性能和科学文献,并在该地区的自然和人工渔礁调查结果被告知。最终,在多个空间尺度设计并入heterogeneity7同时尝试提高封装的高浮雕部件,表面积与体积比,周长,交错带,和小规模的电流流动的功能和营养物通量和同时与沿着帕洛斯天然珊瑚礁的大小一致的第斯半岛。此外,放置和个人礁块(即,2×48米异构采石场岩石礁),用于块之间的沙通道包括空间的间隔,以允许沉淀物运输和创建砂/岩石交错的栖息地,同时保持足够靠近彼此的和现有的天然礁保持生物的连接。礁块也位于其中观察到在该区域最有生产力礁栖息地的深度(15-20米)。最后,我们讨论一个提议前,后施工监控所有可能被执行,将充分利用其在恢复珊瑚礁的设计元素复制到告知未来的珊瑚礁恢复计划程序andadditional研究。

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