海滩岩石:以色列海岸全新世晚期堆积的年代基准

IF 3.1 2区 地球科学 Q2 GEOGRAPHY, PHYSICAL
Amir Bar , Dov Zviely , Joel Roskin , Ehud Galili , Naomi Porat , Revital Bookman
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引用次数: 0

摘要

海滩岩层是海岸形态动力学的代用指标,因此通常用于古环境解释。与海岸线平行的线性海滩岩层是以色列地中海海岸线的典型特征。通过对海滩岩进行新的地貌学和沉积学分析,并结合相对和绝对地质年代学,可以确定其碎屑组成特征并确定其年龄。以色列中部沙龙海岸沙滩上的原位海滩岩露头由石英砂、贝壳和贝壳碎片组成,并显示有大量来自海岸悬崖的碎石。使用便携式光学激发发光(pOSL)分析的海滩岩石切片提供了切片内部和切片之间的相对年代框架。结果显示,光信号积累适度,表明在海滩岩石形成的初始阶段,海滩逐渐堆积。光学激发发光(OSL)年龄表明,未固结海滩沉积物的沉积时间约为公元前 1600-800 年。前滩沉积物的掩埋使潮间带得以迅速固结。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Beachrock: A chronological benchmark for Late Holocene build-up on the coast of Israel

Beachrock formations are proxies of coastal morphodynamics, and are thus commonly utilized for paleoenvironment interpretations. Linear beachrock outcrops parallel to the shoreline are typical of the Mediterranean coastline of Israel. A new geomorphic and sedimentological analysis of beachrock, integrated with relative and absolute geochronology, characterizes their clastic composition and determines their ages. In-situ beachrock outcrops in the sandy beaches of the Sharon coast of central Israel are composed of quartz sand, shells and shell fragments, and show a significant contribution of fragmented rocks from the coastal cliff. Sections of beachrocks analyzed using portable Optically Stimulated Luminescence (pOSL) provided a relative chronological framework within and between the sections. The results show a moderate optic signal accumulation, indicating a gradual beach build-up during initial beachrock formation stages. Optically Stimulated Luminescence (OSL) ages indicate deposition of unconsolidated beach sediments dated to about 1600–800 years before present (BP). The sediment burial at the former foreshore enabled rapid consolidation in the intertidal zone.

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来源期刊
Geomorphology
Geomorphology 地学-地球科学综合
CiteScore
8.00
自引率
10.30%
发文量
309
审稿时长
3.4 months
期刊介绍: Our journal''s scope includes geomorphic themes of: tectonics and regional structure; glacial processes and landforms; fluvial sequences, Quaternary environmental change and dating; fluvial processes and landforms; mass movement, slopes and periglacial processes; hillslopes and soil erosion; weathering, karst and soils; aeolian processes and landforms, coastal dunes and arid environments; coastal and marine processes, estuaries and lakes; modelling, theoretical and quantitative geomorphology; DEM, GIS and remote sensing methods and applications; hazards, applied and planetary geomorphology; and volcanics.
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