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首页> 外文期刊>Geomorphology >Holocene evolution of Phra Thong's beach-ridge plain (Thailand) - Chronology, processes and driving factors
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Holocene evolution of Phra Thong's beach-ridge plain (Thailand) - Chronology, processes and driving factors

机译:帕通海滩脊平原(泰国)的全新世演化-年表,过程和驱动因素

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Beach-ridge plains are a common morphological element of coastal areas all over the world. While morphological depressions of beach-ridge plains (swales) may function as archives for deposits of extreme wave events, the ridges are not only used as an indicator for coastal evolution but also to reconstruct the processes that are responsible for their formation. In this study, the morphological, sedimentary and chronological structure of the beach-ridge plain on Phra Thong Island was used as an archive for the temporally and spatially complex pattern of shoreline changes during the Holocene. The presence of three spatio-temporal ridge-plain units separated by episodes of shoreline erosion and characterised by varying directions and rates of shoreline progradation, reveals six distinct phases of island evolution within the last 6000 years. Unit I was deposited during phase 1 (5500-4000 years ago) with high progradation rates of 2.1-2.5 m/year. Subsequent to a short episode of erosion during phase 2 (4000-3800 years ago), fast shoreline progradation at a rate of 2.7 m/year (unit IIa) occurred once again in phase 3 (3800-3300 years ago). After 3300 years ago, the sedimentation rate decreased to less than 1 m/year, resulting in the formation of unit lib during phase 4 (3300-1500 years ago). In phase 5, between 1500 and 800 years ago, ridge-plain formation was once more interrupted by significant shoreline erosion. Finally, over most of the last 800 years, during phase 6, slow shoreline progradation led to the formation of unit III. This evolution is best explained by the interaction of long-term sea-level change, wave climate, episodic events (tsunamis and storms) and local sediment supply. However, the linkage of successive ridge and swale formation, changing progradation rates and switch-over between phases of erosion and deposition with its trigger mechanisms remains speculative, since (i) the processes involved vary locally and are poorly understood for Phra Thong Island, and (ii) even our comparably large dataset cannot reconstruct the complex spatial and temporal pattern of shoreline evolution without significant uncertainties. This implies that interpretations of ridge plains based on small datasets might be too generalised to capture the real complexity of the system and, as a consequence, might lead to incorrect conclusions about palaeoenvironmental conditions. (C) 2015 Elsevier B.V. All rights reserved.
机译:滩脊平原是全世界沿海地区的常见形态要素。滩脊平原(洼地)的形态凹陷可能充当极端波浪事件沉积的档案库,而这些脊不仅被用作沿海演变的指标,而且还可以重建造成其形成的过程。在这项研究中,帕通岛海滩脊平原的形态,沉积和时间结构被用作全新世期间海岸线变化的时空复杂模式的档案。三个时空脊平原单元的存在,被海岸线侵蚀事件所分隔,并具有不同的海岸线前进方向和速率,这些特征揭示了过去6000年中岛屿演化的六个不同阶段。第一单元在第1阶段(5500-4000年前)以2.1-2.5 m /年的高速率沉积。在第2阶段(4000-3800年前)发生短暂的侵蚀之后,第3阶段(3800-3300年前)再次以2.7 m /年的速度快速扩张海岸线(IIa单元)。 3300年前后,沉积速率降至不到1 m /年,导致在第4阶段(3300-1500年前)形成了单元库。在1500至800年前的第5阶段,山脊平原的形成再次被明显的海岸线侵蚀所打断。最后,在过去的800年中的大部分时间里,在第6阶段,海岸线缓慢发展导致了III单元的形成。长期海平面变化,波浪气候,突发事件(海啸和风暴)和当地沉积物供应之间的相互作用可以最好地解释这种演变。但是,连续的山脊和沼泽形成,不断变化的增速以及侵蚀和沉积阶段之间的转换及其触发机制之间的联系仍然是推测性的,因为(i)所涉及的过程在当地各不相同,并且对于帕通岛知之甚少;以及(ii)即使我们的大型数据集也无法在没有明显不确定性的情况下重建海岸线演化的复杂时空格局。这意味着基于小数据集的山脊平原的解释可能过于笼统而无法捕获系统的实际复杂性,因此,可能导致关于古环境条件的错误结论。 (C)2015 Elsevier B.V.保留所有权利。

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