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首页> 外文期刊>Sedimentary geology >Compositional variations in deep-sea gravity-flow deposits. A case study from the Voirons Flysch (Voirons-Waegital complex, Chablais Prealps, France)
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Compositional variations in deep-sea gravity-flow deposits. A case study from the Voirons Flysch (Voirons-Waegital complex, Chablais Prealps, France)

机译:深海重力流沉积物的成分变化。 Voirons Flysch(法国Chablais Prealps的Voirons-Waegital建筑群)的案例研究

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Grain-size control is frequently invoked to explain the compositional variation of detrital sediments in fluvial sediments. A similar possibility is here investigated in the fossil deep-sea gravity-flow deposits from the Voirons Flysch (Voirons-Wagital complex, Chablais Prealps). About 270 samples of diverse depositional settings were analysed using the framework composition, including cement and porosity, Mutti facies and grain-size measurements. Six lithofacies have been identified from cluster analysis. They correspond to channel (L1 to L3) and lobe (L4 and L5) depositional settings and to reworked turbidites (L6). Our results emphasize the close relationship between petrography and grain-size which alters the detrital signal from extrabasinal sources. The abundant polycrystalline component of proximal deposits is progressively removed while skeletal grains and additional intrabasinal grains become more abundant in distal deposits. Alongside, porosity is reduced by the simultaneous increase of cement which constrains subsequent diagenetic modifications. Hence, proximal depositional settings keep most of the inherited signal from extrabasinal sources whereas distal deposits will be homogenised. When plotted in provenance-analysis diagrams, the successive depositional settings show distinct fields possibly corresponding to different tectonic settings of the Dickinson model. This compositional variation thus creates a bias in provenance interpretation resulting from both grain-size control and flow mechanisms. Finally, our results emphasize that petrographic data must be handled with care in provenance analyses, especially when comparing various deep-sea gravity flow systems with different grain-size ranges. (C) 2018 Elsevier B.V. All rights reserved.
机译:经常采用粒度控制来解释河流沉积物中碎屑沉积物的组成变化。在Voirons Flysch(Voirons-Wagital矿床,Chablais Prealps)的化石深海重力流沉积物中,研究了类似的可能性。使用骨架组成分析了大约270个不同沉积环境的样品,包括水泥和孔隙度,Mutti相和粒度测量。通过聚类分析确定了六个岩相。它们对应于通道(L1至L3)和波瓣(L4和L5)的沉积环境,并对应于返工的浊度(L6)。我们的结果强调了岩相学与晶粒度之间的密切关系,这改变了来自基底外来源的碎屑信号。近端沉积物的丰富多晶成分逐渐被去除,而远端沉积物中骨骼颗粒和其他基底内颗粒变得更加丰富。同时,通过同时增加胶结物来减少孔隙度,这限制了随后的成岩作用。因此,近端沉积环境保留了大部分来自基底外来源的遗传信号,而远端沉积物将被均质化。当在物源分析图中绘制时,连续的沉积环境显示出可能对应于狄金森模型的不同构造环境的不同场。因此,这种成分变化会由于粒度控制和流动机制而在物源解释上产生偏差。最后,我们的结果强调,在进行物证分析时必须特别小心地处理岩石学数据,尤其是在比较具有不同粒度范围的各种深海重力流系统时。 (C)2018 Elsevier B.V.保留所有权利。

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