首页> 外文期刊>Australian journal of maritime & ocean affairs >Geomorphic patterns, internal architecture and reef growth in a macrotidal, high-turbidity setting of coral reefs from the Kimberley bioregion
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Geomorphic patterns, internal architecture and reef growth in a macrotidal, high-turbidity setting of coral reefs from the Kimberley bioregion

机译:金伯利生物区珊瑚礁的大潮,高浊度环境中的地貌模式,内部构造和礁石生长

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The coral reefs of the Kimberley bioregion are situated in an area that is considered a significant 'biodiversity hotspot' and are poorly known and of recognised international significance. This paper is a review of ongoing research as part of one of the first geoscientific reef studies of the Kimberley Biozone. Remote sensing, sub-bottom profiling and associated sedimentological work have been employed to produce a regional geodatabase of coral reefs and determine the Holocene internal architecture and growth history of the coral reefs. Satellite image analysis has revealed that fringing reefs in the Kimberley bioregion grow very well and differ geomorphologically from planar reefs both inshore and offshore. The acoustic profiles have depicted multiple reef build-ups, demonstrating the reefs' long-term resilience. This research has provided a better understanding of the Kimberley reefs and demonstrated their capacity to succeed in challenging environments and generate habitats characterised by high complexity and species diversity.
机译:金伯利(Kimberley)生物区的珊瑚礁位于一个被认为是重要的“生物多样性热点”的地区,鲜为人知并且具有公认的国际意义。本文是对正在进行的研究的回顾,这是金伯利生物区最早的地球科学礁研究之一。遥感,底下剖面分析和相关的沉积学工作已用于建立珊瑚礁区域地理数据库,并确定全新世内部构造和珊瑚礁的生长历史。卫星图像分析表明,金伯利(Kimberley)生物区的礁石生长良好,并且在地貌上与近海和近海的平面礁石不同。声学轮廓描绘了多个礁石堆积,表明了礁石的长期回弹力。这项研究使人们对金伯利珊瑚礁有了更好的了解,并证明了它们在挑战性环境中取得成功并创造出以高度复杂性和物种多样性为特征的栖息地的能力。

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    Department of Applied Geology, Curtin University, Bentley, WA 6102, Australia,The Western Australian Marine Science Institution, Floreat 6014, Australia;

    Department of Environment and Agriculture, Curtin University, Bentley, WA 6102, Australia;

    Department of Environment and Agriculture, Curtin University, Bentley, WA 6102, Australia;

    Department of Environment and Agriculture, Curtin University, Bentley, WA 6102, Australia;

    Department of Environment and Agriculture, Curtin University, Bentley, WA 6102, Australia;

    Department of Applied Geology, Curtin University, Bentley, WA 6102, Australia;

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