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Decoding depositional sequences in carbonate systems: Concepts vs experience

机译:碳酸盐体系中沉积序列的解码:概念与经验

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Efficacy of sequence stratigraphic concepts in siliciclastic systems has been proven by successful applications in both academia and the industry over the past four decades. However, experience has demonstrated repeatedly that the relatively simple advective transportational approach of these models is less than successful when applied to the more complex carbonate systems and can lead to erroneous interpretations. Instead, an approach that includes the use of the changes in the biotic components of carbonate deposits to infer the sea-level trajectory and thereby placing it in the proper sequence framework is deemed to be more meaningful. This is exemplified with several well-studied examples that illustrate the variety of ways in which the biotic components can build carbonate platforms, and how these have changed through the ages prompted by biological evolution. This extended review discusses carbonate production, source to sink transportation influenced by sea-level changes, surface waves, as well as the less understood and under-appreciated internal waves, and the resulting variety of platforms that can be built by the interaction of these factors, as well as the changing patterns of biotic components with time. Their effect on the carbonate reservoir is considerable, understanding of which is the ultimate objective of carbonate research for applications in the industry.
机译:过去四十年来,层状地层学概念在硅质碎屑系统中的有效性已在学术界和工业界成功应用。但是,经验反复证明,这些模型的相对简单的对流输运方法在应用于更复杂的碳酸盐体系时效果不佳,并且可能导致错误的解释。取而代之的是,一种方法包括使用碳酸盐沉积物中生物成分的变化来推断海平面轨迹,然后将其置于适当的序列框架中,这被认为是更有意义的。这是通过几个经过充分研究的示例来说明的,这些示例说明了生物成分可以通过哪些方式构建碳酸盐平台,以及这些方式在生物进化引发的年龄中如何发生了变化。这篇扩展的综述讨论了碳酸盐的生产,受海平面变化,地表波以及鲜为人知和未被充分认识的内部波影响的源下沉运输,以及通过这些因素的相互作用可以建立的各种平台,以及生物成分随时间变化的模式。它们对碳酸盐岩储层的影响相当大,对此的理解是碳酸盐岩研究在工业中应用的最终目标。

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  • 来源
    《Global and planetary change》 |2016年第11期|190-225|共36页
  • 作者

    Pomar Luis; Haq Bilal U.;

  • 作者单位

    Univ Balearic Isl, Palma De Mallorca, Spain;

    Smithsonian Inst, Washington, DC 20560 USA|Univ Paris 06, Sorbonne, Paris, France;

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  • 正文语种 eng
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