首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Post-plutonic unroofing and morphogenesis of the Attic-Cycladic complex (Aegea, Greece)
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Post-plutonic unroofing and morphogenesis of the Attic-Cycladic complex (Aegea, Greece)

机译:Attic-Cycladic复杂体的古生代解顶和形态发生(希腊爱琴海)

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The Attic-Cycladic complex of Greece comprises an Eocene high-P unit with blueschist occurrences. Unroofing of this unit took place in Oligocene-Miocene times and was accompanied by a regional low-P medium-T overprint and Miocene granitic plutonism. Apatite fission-track ages of 14 "crystalline" samples from the islands of Tinos, Mikonos and Serifos range between 13.1 and 5.3 Ma, corresponding to the middle and late Miocene. The frequency distributions of confined track lengths are characterised by high arithmetic means of 14.2-15.1 mum and by standard deviations from 0.9 to 1.6 mum. Thermo chronological modelling of the data indicates rapid cooling between 10 and 6 Ma and subsequent deceleration of the cooling rates. For a short time, the Miocene plutons of Tinos, Mikonos and Serifos experienced maximum cooling rates above 50 degreesC/Ma. These exceptionally high cooling rates cannot be explained by strong vertical uplift and fast regional erosion. Such a process is disproved by preserved remnants of a former peneplain, including inselbergs and kaolinized tropical subsoil. On Mikonos, fast post-plutonic cooling of the lower plate was apparently accompanied by simultaneous sedimentation on the upper plate. We propose a post-plutonic cooling model which assumes strong periplutonic heat flow into much cooler host rocks and fast extensional unroofing. (C) 2002 Elsevier Science B.V All tights reserved. [References: 58]
机译:希腊的阁楼-基克拉迪综合体由始新世高磷单元和蓝片岩出现。在渐新世-中新世时期对这个单元进行了屋顶修整,并伴随着区域性的低磷中T叠印和中新世花岗岩成岩作用。来自Tinos,Mikonos和Serifos岛的14个“晶体”样品的磷灰石裂变径迹年龄在13.1到5.3 Ma之间,对应于中新世中期和晚期。有限轨道长度的频率分布以14.2-15.1微米的高算术平均值和0.9到1.6微米的标准偏差为特征。数据的时间序列热模型表明10到6 Ma之间的快速冷却以及随后的冷却速率降低。在很短的时间内,Tinos,Mikonos和Serifos的中新世俯冲体的最高冷却速度超过了50℃/ Ma。如此高的冷却速度无法用强烈的垂直隆升和快速的区域侵蚀来解释。前Peneplain(包括inselbergs和高岭土化的热带底土)的残留物无法证明这种过程。在米科诺斯岛上,下层板块的快速后溶质冷却明显伴随着上层板块的同时沉降。我们提出了一个后古生代的冷却模型,该模型假设强的古生代热流进入较冷的宿主岩体和快速的伸展开顶过程。 (C)2002 Elsevier Science B.V版权所有。 [参考:58]

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