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Platform-top reef sand apron morphodynamics and the half-empty bucket

机译:平台顶部礁石砂围流形态学和半空桶

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摘要

In shallow water atop many isolated platforms and atolls, reef sand aprons largely consist of debris shed platformward from shelf-margin reefs towards the lagoon. Although their general geomorphology and sedimentology are broadly understood, quantitative details of the possible role of reef sand apron hydrodynamics on their geomorphic evolution remain less well constrained. To test the hypothesis that on-platform reef sand apron progradation is prone to completely infill adjacent lagoons, this study documents over 50 new hydrodynamic simulations that isolate and evaluate the relations among geomorphology, waves, and tides. The results show how deep-water waves hit the shelf margin and favor on-platform sediment transport, but highlight that tides modulate the influence of waves while generating currents on their own. Across the range of wave heights and tidal amplitudes, however, platform-directed bed shear stress on shallow reef flats decreases with increasing reef and reef sand apron width. Parts of broad reef sand aprons can even include off-platform-directed shear stress during incoming flood tide. These insights motivate a conceptual model for how the process of widening of a reef sand apron by lagoonward sediment transport decreases the magnitude of the very forces that drive the transport, inhibiting further progradation. Such an autogenic, self-limiting dynamic curbs the propensity of lagoons to fill with coarse sediment shed from the reef by reef sand apron expansion. Instead, many atolls are doomed to remain "half-empty buckets," even in the absence of external change such as a relative change in sea level. (C) 2020 Elsevier B.V. All rights reserved.
机译:在浅水中,许多孤立的平台和环礁,珊瑚礁砂围栏主要由碎片棚平台从盐水湖到泻湖。虽然广泛地理解它们的大致地貌和沉积物,但Reef Sand Apron流体动力学对其几何演化的可能作用的定量细节仍然不太受到限制。为了测试平台珊瑚礁砂挡板促进的假设,易于完全填充相邻的泻湖,这项研究文件超过50多个新的流体动力模拟,这些模拟孤立和评估地貌,波浪和潮汐之间的关系。结果表明深水波如何击中货架边距并有利于平台沉积物运输,但潮汐调节波浪在自己的电流时调制波浪的影响。然而,在波浪高度和潮汐幅度的范围内,浅礁平面上的平台导向床剪切应力随着珊瑚礁和珊瑚礁砂围栏宽度的增加而减小。宽礁砂围裙的一部分甚至可以包括进入洪水潮汐期间的平台导向的剪切应力。这些见解激发了一种概念模型,了解礁袋沉积物传输的礁砂砂围的过程的过程如何降低驱动运输的非常力的大小,抑制进一步的促进。这种自动化的自动限制性动态遏制泻龙的倾向,通过珊瑚礁砂围裙扩张从礁石中填充粗沉积物。相反,许多环礁注定要保持“半空桶”,即使在没有外部变化的情况下,诸如海平面的相对变化。 (c)2020 Elsevier B.v.保留所有权利。

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