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Revised models for determining TOC in shale play: Example from Devonian Duvernay Shale, Western Canada Sedimentary Basin

机译:确定页岩气中TOC的修订模型:以加拿大西部沉积盆地的泥盆纪Duvernay页岩为例

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Determination of total organic carbon (TOC) is essential in unconventional shale resource play evaluation. Indirect method, such as petrophysical approach, can provide a fast, convenient and cost efffective means for TOC estimation from well logs. Among the publically available approaches, the Delta logR method is a popular one in conventional source rock evaluation and has been applied to unconventional resource play evaluation by many practitioners. Careful examination of the method finds that improvements can be made for a better TOC estimation with relaxed limitations. This study proposes the following revisions on the original Delta logR method: 1) allowing estimation of petrophysical parameters from the targeted source rock rather an assumed linear approximation, 2) using additional logs to improve TOC prediction, and 3) replacing LOM (level of organic metamorphism unit) with a more commonly used thermal indicator Tmax for convenience. Depending on data or preference, the choice of using different porosity logs (density versus sonic) and parameter estimation methods (cross-plot method versus data-driven approaches) makes the revised method flexible for application. We present the revisions along with application examples from the Devonian Duvernay Shale in the Western Canada Sedimentary Basin to demonstrate the application of the improved Delta logR method in shale gas evaluation. Comparison of the results from the revised method and the original one reveals that the revised models provide better and unbiased estimates of TOC with a higher correlation coefficient and bell-shaped residues centered at zero. (C) 2015 Elsevier Ltd. All rights reserved.
机译:总有机碳(TOC)的确定对于非常规页岩资源开发评价至关重要。间接方法,例如岩石物理方法,可以为测井中的TOC估算提供一种快速,方便且具有成本效益的手段。在公开可用的方法中,Delta logR方法是常规烃源岩评估中的一种流行方法,并已被许多从业人员应用于非常规资源勘探评估中。对该方法进行仔细检查后发现,可以在放宽限制的前提下对更好的TOC估计进行改进。这项研究提出了对原始Delta logR方法的以下修订:1)允许从目标烃源岩估算岩石物理参数,而不是假设的线性近似; 2)使用附加测井以改善TOC预测,以及3)替代LOM(有机物水平)为方便起见,带有一个更常用的温度指示器Tmax。根据数据或偏好,选择使用不同的孔隙率测井(密度与声波)和参数估计方法(交叉图方法与数据驱动方法),使修订后的方法可灵活应用。我们介绍了加拿大西部沉积盆地泥盆纪Duvernay页岩的修订版和应用实例,以证明改进的Delta logR方法在页岩气评价中的应用。将修改后的方法与原始方法的结果进行比较,结果表明,修改后的模型提供了更好且无偏的TOC估计值,具有更高的相关系数,并且钟形残基位于零。 (C)2015 Elsevier Ltd.保留所有权利。

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