匈牙利Tisza河下游河漫滩水位的年龄限制

G. Sipos, T. Kiss, O. Tóth
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引用次数: 12

摘要

在晚更新世—全新世过渡时期,大匈牙利平原河流景观在构造、气候和地貌等因素的影响下发生了显著变化。地质年代学,特别是发光测年,是重建这些变化的非常重要的工具。本研究的重点是下tisza地区,并解决了不同泛滥平原水平的发展时间。同时,对所调查的冲积沉积层的发光特性进行了评价,特别强调了粉质细粒和砂质粗粒结果的比较,因为在给定的中低能环境中,细粒沉积物更丰富,但从文献来看,粗粒样品在发光测年方面更可靠。对12个样本进行了测量,这些样本来自两条大的古曲流的点坝,代表了河流沿岸不同的洪泛区水平。结果表明,两种粒度分数都适用于定年,但细粒亚样本平均高估粗粒亚样本的年龄1.5 ka。因此,细粒样品只能用于概述一般趋势,结果需要在可能的情况下通过粗粒测量来控制。根据所得年龄,上河漫滩活跃形成至13 ~ 15 ka,开始切入,形成中间河漫滩水平面。直至9 ka,中间洪泛平原上的曲流发育非常活跃。接收到的年龄信息表明,曲流形成的强度受气候,特别是植被控制的影响很大。但是,通过进一步的采样和本文结果的应用,重建可以在以后得到改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Constraining the Age of Floodplain Levels Along the Lower Section of River Tisza, Hungary
Abstract During the Late Pelistocene-Holocene transition the fluvial landscape of the Great Hungarian Plain changed considerably as a consequence of tectonic, climatic and geomorphological factors. Geochronology, and especially luminescence dating, is a very important tool in reconstructing these changes. The present study focuses on the Lower-Tisza region and addresses the timing of the development of different floodplain levels. In the meantime the luminescence characteristics of the investigated alluvial sediments were also assessed, with a special emphasis on the comparison of silty fine grain and sandy coarse grain results, as in the given medium and low energy environment fine grain sediments are more abundant, however, based on the literature, coarse grain samples are more reliable in terms of luminescence dating. Measurements were performed on 12 samples originating from the point bars of two large palaeo-meanders, representing different floodplain levels along the river. Results indicate the applicability of both grain size fractions for dating purposes, though fine grain subsamples overestimate in average by 1.5 ka the ages yielded by coarse grain subsamples. Consequently, fine grain samples can be used for outlining only general trends, and results need to be controlled by coarse grain measurements where possible. Based on the ages received, the upper floodplain was actively formed until 13-15 ka, when incision and the development of an intermediate floodplain level started. The meander on the intermediate flood plain level developed then very actively until 9 ka. As indicated by the received age information the intensity of meander formation could be highly affected by climatic and especially vegetation control. However, reconstruction can be refined later by further sampling and the application of the results of the present paper.
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