Exhumation and relief history of the Southern Carpathians (Romania) as evaluated from apatite fission track chronology in crystalline basement and intramontane sedimentary rocks

被引:0
作者
F. Moser
H. P. Hann
I. Dunkl
W. Frisch
机构
[1] University of Tübingen,Institute of Geosciences
[2] University of Göttingen,Geoscience Center Göttingen Sedimentology & Environmental Geology
来源
International Journal of Earth Sciences | 2005年 / 94卷
关键词
Southern Carpathians; Exhumation; Fission track; Sediment; Tertiary;
D O I
暂无
中图分类号
学科分类号
摘要
The combination of apatite fission track (FT) thermochronology from basement units and the FT age distributions of apatites in the Miocene intramontane sedimentary rocks allows describing the exhumation history of the central segment of the Southern Carpathians, Romania. Exhumation and cooling from the total track annealing temperature (>120°C) of the Cozia and Cibin massifs occurred in the Palaeocene–Early Eocene. Between the Eocene and Middle Miocene, there was a stagnation period concerning vertical displacement; the presently exposed part of the basement was buried in shallow depth. The present crests of the Cozia and Cibin Mountains were at temperatures around 80°C and 50°C, respectively. The second exhumation period occurred in Middle Miocene times. The magnitude of the Miocene vertical displacement is on the order of the present-day relief. The vertical apatite FT age distribution in the basement and the age clusters in the sedimentary rocks prove that the levels of the crests were already close to the surface in Palaeogene times. Therefore, the post-Palaeocene erosional removal from the crest zones is very limited.
引用
收藏
页码:218 / 230
页数:12
相关论文
共 183 条
[1]  
Balintoni I(1986)Considerations on a preliminary structural model of the South Carpathian Crystalline east of the Olt River D S Inst Geol Geofiz, Bucureşti 70–71 23-44
[2]  
Hann HP(1988)The Cerna-Jiu fault system (South Carpathians, Romania) a major tertiary transcurrent lineament D S Inst Geol Geofiz Bucureşti 72–73 43-57
[3]  
Gheuca I(1983)Nappe structure of the Danubian Window of the Central South Carpathians An Inst Geol Geofiz Bucureşti 72–73 43-57
[4]  
Nedelcu L(1984)Dynamic and retrograde metamorphism: examples from the Romanian South Carpathians An Inst Geol Geofiz Bucureşti LXIV 25-32
[5]  
Conovici M(1994)South Carpathians. ALCAPA II Field Guidebook Rom J Tect Reg Geol 75 37-49
[6]  
Dumitraşcu G(1971)Fission fragment track in apatite: recordable track lenghts Earth Planet Sci Lett 13 191-199
[7]  
Gridan T(1998)Jurassic to Cenozoic thermal evolution of the southwestern South Carpathians: evidence from fission-track thermochronology Tectonophysics 297 229-249
[8]  
Berza T(1992)Decomposition of fission-track grain-age distribution Am J Sci 292 535-564
[9]  
Drăganescu A(1998)Late Cenozoic exhumation of the Cascadia accretionary wedge in the Olympic Mountains, Northwest Washington State Geol Soc Amer Bull 110 985-1009
[10]  
Berza T(1972)Fission track age determinations of accessory apatite from the Tatra Mountains, Poland Earth Planet Sci Lett 15 418-422