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首页> 外文期刊>Marine and Petroleum Geology >Forward modelling of carbonate platforms: Sedimentological and diagenetic constraints from an application to a flat-topped greenhouse platform (Triassic, Southern Alps, Italy)
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Forward modelling of carbonate platforms: Sedimentological and diagenetic constraints from an application to a flat-topped greenhouse platform (Triassic, Southern Alps, Italy)

机译:碳酸盐平台的正演模拟:从应用到平顶温室平台(三叠纪,南阿尔卑斯山,意大利)的沉积学和成岩学约束

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Quantitative analysis of depositional systems using, numerical models can provide insights into the interaction of sedimentological and diagenetic processes, difficult to interpret from observation of the geological products alone. Numerical models can highlight the interactions between controlling parameters, and generate best estimate simulations of case studies from the geological record. Different data sources (e.g., outcrop data, uniformitarian constraints, paleogeography) need to be considered in the process of defining the parameters required to produce models that honour individual case studies. We present a best-estimate forward model of a high-relief Triassic carbonate platform (Southern Alps, Italy) generated using CARB3D+, a 3D process-based forward modelling package able to simulate sedimentary fades, geometries and early diagenesis of isolated carbonate platforms. The parameters used for the presented forward model have been deduced by the study of architectural, sedimentological and diagenetic features of the platform, and by data from modern and ancient analogues. Sensitivity analysis is used to tune values of the parameters within ranges defined from field, laboratory and uniformitarian constraints. Critical evaluation of the model allowed 1) verification of the validity of the used parameters; 2) evaluation of the interaction between controlling parameters; 3) development of a numerical model that can be used for quantitative elaborations. Furthermore, the process of generating the numerical model required a detailed interpretation of field and laboratory data, crucial to define the required input parameters. Modelling the studied carbonate platform also enabled evaluation of the effects of the interaction between productivity, environmental energy and creation of accommodation space, promoting the understanding of their role on the architecture of carbonate systems. Forward modelling also allows the integration of data from conventional data sets with data from present-day observations and seismic geometries, promoting a transition from a qualitative to a semi-quantitative/quantitative sedimentological approach. Forward models can further be used to parameterise petrophysical properties of complex geobodies, with potential application for the management of georesources. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用数值模型对沉积系统进行定量分析可以提供有关沉积学和成岩作用相互作用的见解,仅凭观察到的地质产物很难解释。数值模型可以突出控制参数之间的相互作用,并根据地质记录生成案例研究的最佳估算模拟。在定义生成尊重个别案例研究的模型所需的参数的过程中,需要考虑不同的数据源(例如露头数据,均等约束,古地理)。我们提供了一个使用CARB3D +生成的高浮雕三叠纪碳酸盐岩台地(意大利南阿尔卑斯山)的最佳估计正向模型,CARB3D +是一种基于3D过程的正向建模软件包,能够模拟孤立的碳酸盐台地的沉积物衰落,几何形状和早期成岩作用。通过对平台的建筑,沉积学和成岩特征的研究,以及来自现代和古代类似物的数据,推导出了用于当前正演模型的参数。灵敏度分析用于在野外,实验室和均势性约束定义的范围内调整参数值。对模型的严格评估允许1)验证所用参数的有效性; 2)评估控制参数之间的相互作用; 3)开发可用于定量细化的数值模型。此外,生成数值模型的过程需要对现场和实验室数据进行详细解释,这对于定义所需的输入参数至关重要。对研究的碳酸盐平台进行建模还可以评估生产力,环境能源和住宿空间之间相互作用的影响,从而增进人们对其在碳酸盐体系结构上的作用的了解。前向建模还可以将常规数据集的数据与当前观测值和地震几何数据进行集成,从而促进从定性向半定量/定量沉积学方法的转变。正向模型可以进一步用于参数化复杂地质体的岩石物性,具有潜在的地质资源管理应用。 (C)2016 Elsevier Ltd.保留所有权利。

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