Arid
DOI10.1016/j.geomorph.2011.07.011
Revealing sediment sources, mixing, and transport during erosional crater evolution in the hyperarid Negev Desert, Israel
Fruchter, N.1; Matmon, A.1; Avni, Y.2; Fink, D.3
通讯作者Matmon, A.
来源期刊GEOMORPHOLOGY
ISSN0169-555X
出版年2011
卷号134期号:3-4页码:363-377
英文摘要

To better understand the sedimentary history of the erosional crater of Makhtesh Hazera in the hyper-arid Negev Desert of southern Israel we have measured concentrations of in situ (10)Be in alluvial sediments from the active drainage system and from abandoned alluvial terraces and dated them using optically stimulated luminescence (OSL). These sedimentary sequences suggest changes in the drainage system behavior over time and show a periodic pattern in which periods of sediment aggradation alternate with periods of degradation through incision and erosion.


In alluvial terrace sediments, (10)Be concentrations were combined with OSL ages to gain insight of the temporal framework of sediment deposition and shed light on the process of sediment storage. OSL and simple I Be exposure ages of terrace sediments give deposition ages between similar to 340 ka to similar to 50 ka, at which time the youngest alluvial terrace was incised. Deposition was interrupted twice, at similar to 300 ka and similar to 160 ka, when periods of rapid incision caused the abandonment of the active fluvial surface and the stabilization of a younger and lower fluvial surface.


In the active drainage system, (10)Beconcentrations suggest several possible quartz sources, of which the Lower Cretaceous sandstone bedrock exposed at the base of the cliff enclosing the Makhtesh is the most dominant. The results suggest that sediment eroding form these cliffs are conveyed through the active alluvial channels without significant sediment contribution from alluvial terraces or from eroded bedrock exposed within the Makhtesh. In contrast to our measurements in the active drainage system, (10)Be concentrations in alluvial terrace sediments record significant storage within the Makhtesh. We suggest that the geometry of the Makhtesh, mainly the disproportion between the size of the Makhtesh and its narrow outlet, leads to significant accumulation of sediment within the Makhtesh. Episodic breaching of the barrier is followed by rapid and short-lived incision into the stored sediment. The long residence time of sediment within the Makhtesh results in high measured (10)Be concentrations. At the end of each of these short incision episodes, when channels are already carved into the alluvial sediment and terraces are formed, the channels only convey sediment directly eroded from the bounding cliff of the Makhtesh; a situation presently observed. (C) 2011 Elsevier B.V. All rights reserved.


英文关键词Geomorphology Arid Fluvial terraces Sediment transport Sediment mixing Cosmogenic isotopes Optically stimulated luminescence Negev Desert
类型Article
语种英语
国家Israel ; Australia
收录类别SCI-E
WOS记录号WOS:000295998000015
WOS关键词GREAT-SMOKY MOUNTAINS ; COSMOGENIC NUCLIDES ; SCALING FACTORS ; DRAINAGE-BASIN ; EXPOSURE AGES ; REG SOILS ; BE-10 ; RATES ; AL-26 ; SPELEOTHEMS
WOS类目Geography, Physical ; Geosciences, Multidisciplinary
WOS研究方向Physical Geography ; Geology
来源机构Hebrew University of Jerusalem
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/168281
作者单位1.Hebrew Univ Jerusalem, Inst Earth Sci, IL-91904 Jerusalem, Israel;
2.Geol Survey Israel, IL-95501 Jerusalem, Israel;
3.Australian Nucl Sci & Technol Org, Menai, NSW 2234, Australia
推荐引用方式
GB/T 7714
Fruchter, N.,Matmon, A.,Avni, Y.,et al. Revealing sediment sources, mixing, and transport during erosional crater evolution in the hyperarid Negev Desert, Israel[J]. Hebrew University of Jerusalem,2011,134(3-4):363-377.
APA Fruchter, N.,Matmon, A.,Avni, Y.,&Fink, D..(2011).Revealing sediment sources, mixing, and transport during erosional crater evolution in the hyperarid Negev Desert, Israel.GEOMORPHOLOGY,134(3-4),363-377.
MLA Fruchter, N.,et al."Revealing sediment sources, mixing, and transport during erosional crater evolution in the hyperarid Negev Desert, Israel".GEOMORPHOLOGY 134.3-4(2011):363-377.
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