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COLLABORATIVE RESEARCH: RUI: Evaluation of Controls on Carbonate Platform Evolution and Architecture Through Comparative Platform Analysis: Nanpanjiang Basin, South China

COLLABORATIVE RESEARCH: RUI: Evaluation of Controls on Carbonate Platform Evolution and Architecture Through Comparative Platform Analysis: Nanpanjiang Basin, South China
合作研究:RUI:通过比较平台分析评估碳酸盐岩平台演化和构造的控制:华南南盘江盆地
批准号:
9804835
负责人:
Daniel Lehrmann
金额:
$5.59万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
1998
资助国家:
美国
项目状态:
已结题
起止时间:
1998-09-01 至 2003-08-31

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9804835LehrmannUnderstanding the mechanisms that control longevity, architecture, and sequence variability of carbonate platforms is of fundamental importance in scientific studies of carbonate platforms as recorders of ancient environments and in hydrocarbon exploration and exploitation. However, interpretations of internal facies architecture and sequence-stratigraphic correlation's of carbonate platforms are commonly based on an assumption: fluctuations in sea level are the essential controlling mechanism.We propose a collaborative project between Universities of Kansas and Wisconsin-Oshkosh to evaluate the roles of both regional and local variables including sea-level changes, subsidence, tectonic activity, siliciclastics influx, excess nutrient flux, and carbonate production rates on platform architecture. Evaluation of these controls will be accomplished through a comparative analysis of coeval Triassic platforms of various scales, architectures and settings distributed over an area of 650 km2 within the Nanpanjiang Basin of south China. We have chosen the Nanpanjiang Basin because we know of no other area that allows outcrop study of as great a diversity of platform scales and morphologies, including both landward attached platforms and isolated platforms.We will determine sequence-stratigraphic architecture from mapping outcrops that expose continuous two-dimensional transects through the platforms. Comparison of synchronous intervals will aid in separating regional and local controls. We will use detailed biostratigraphy and magnetic-reversal stratigraphy to ensure that synchronous events are evaluated in the separation and interpretation of controlling mechanisms. With this stratigraphic and age data we will construct subsidence histories to isolate local variations so we can examine possible causes for synchronous differences in the stratigraphy between platforms or along strike within platforms. For example, for coeval intervals with similar subsidence and eustatic histories we will use facies analysis to evaluate the impact of variables such as influx of siliciclastics or excess nutrients on interruptions or termination of carbonate platform growth and to evaluate the impact of basin-filling siliciclastics on progradation geometries. The end product will be a series of depositional models that illustrate actual architectural variability in carbonate platforms and a quantitative understanding of the mechanisms that control variability.
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COLLABORATIVE RESEARCH RUI: Testing mechanisms for regional dolomitization of Triassic carbonate platforms across the Nanpanjiang Basin of south China
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