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The origin of centennial- to millennial-scale chronological gaps in storm emplaced beach ridge plains

机译:风暴沙滩平原上百年到千年尺度的年代间隙的起源

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摘要

Recent studies of tropical cyclone surge and wave emplaced beach ridge plains have shown that these sequences often contain centennial to millennial scale gaps in their chronologies. Two explanations for the gaps exist — they are due to erosion, or alternatively a cessation or substantial slowing of depositional processes suggestive of a quieter phase in intense storm activity. Differentiating between the two is important for uncovering reliable long-term storm histories from these sequences. We use landform morphology, sediment texture and luminescence chronology to determine the origin of substantial chronological gaps in a plain containing more than 100 shore-parallel ridges composed of fine-grained sand located in northeast Australia. We identify and describe the characteristics associated with both erosional and non-erosional gaps. The erosional gaps are associated with changes in orientation between ridge sets and often a high ridge with hummocky topography that appears to have been disturbed by aeolian activity. River floods likely caused the partial erosion of ridge sets. Non-erosional gaps do not display these morphological characteristics and are likely associated with quiescence in severe tropical cyclone activity. These geomorphic and chronological signatures can be used to identify different sorts of gaps in other ridge plains and are an important tool in the reconstruction of long-term storm histories from these coastal landforms. The data also suggests that fine-grained ridges can, like their coarse-grained counterparts, be predominantly deposited by storm waves and surge and their texture need not necessarily be indicative of the processes responsible for ridge development.
机译:对热带气旋浪涌和波浪侵袭的海滩山脊平原的最新研究表明,这些序列在年代上通常包含百年至千年尺度的差距。对于间隙的存在两种解释-它们是由于侵蚀,或者是沉积过程的停止或显着减慢,表明强烈的风暴活动处于较平静的阶段。区分两者对于从这些序列中发现可靠的长期风暴历史很重要。我们使用地貌形态,沉积物质地和发光年代学来确定一个平原上大量时间空缺的起源,该平原包含位于澳大利亚东北部的100多条由细粒沙子组成的沿岸平行的山脊。我们确定并描述与侵蚀和非侵蚀间隙相关的特征。侵蚀缝隙与山脊组之间的方向变化有关,并且往往是高高的山脊,其山坡形貌似乎受到风沙活动的干扰。河流洪水很可能导致山脊部分侵蚀。非侵蚀间隙不表现出这些形态特征,并且可能与严重热带气旋活动的静止有关。这些地貌和时间特征可用于识别其他山脊平原的不同类型的间隙,并且是从这些沿海地貌重建长期风暴历史的重要工具。数据还表明,细粒状的山脊和粗粒状的山脊一样,主要是由风暴波和浪涌沉积的,它们的质地并不一定表示造成山脊发育的过程。

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