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Selection of logging-based TOC calculation methods for shale reservoirs: A case study of the Jiaoshiba shale gas field in the Sichuan Basin

机译:页岩储层测井的 TOC 计算方法的选择-以四川盆地焦石坝页岩气田为例

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Various methods are available for calculating the TOC of shale reservoirs with logging data, and each method has its unique applicability and accuracy. So it is especially important to establish a regional experimental calculation model based on a thorough analysis of their applicability. With the Upper Ordovician Wufeng Fm-Lower Silurian Longmaxi Fm shale reservoirs as an example, TOC calculation models were built by use of the improved ΔlgR, bulk density, natural gamma spectroscopy, multi-fitting and volume model methods respectively, considering the previous research results and the geologic features of the area. These models were compared based on the core data. Finally, the bulk density method was selected as the regional experimental calculation model. Field practices demonstrated that the improved ΔlgR and natural gamma spectroscopy methods are poor in accuracy; although the multi-fitting method and bulk density method have relatively high accuracy, the bulk density method is simpler and wider in application. For further verifying its applicability, the bulk density method was applied to calculate the TOC of shale reservoirs in several key wells in the Jiaoshiba shale gas field, Sichuan Basin, and the calculation accuracy was clarified with the measured data of core samples, showing that the coincidence rate of logging-based TOC calculation is up to 90.5%–91.0%.
机译:有多种方法可利用测井数据计算页岩储层的总有机碳,每种方法都有其独特的适用性和准确性。因此,在全面分析其适用性的基础上建立区域实验计算模型尤为重要。以上奥陶统五峰组—下志留统龙马溪组页岩储层为例,分别采用改进的ΔlgR,堆密度,自然伽马能谱,多重拟合和体积模型方法建立了TOC计算模型,并考虑了以往的研究成果。以及该地区的地质特征。这些模型是根据核心数据进行比较的。最后,选择堆密度法作为区域实验计算模型。现场实践表明,改进的ΔlgR和自然伽马能谱法的准确性较差。尽管多重拟合法和堆积密度法具有较高的精度,但是堆积密度法在应用中更简单,更广泛。为了进一步验证其适用性,采用堆密度法计算了四川盆地焦石坝页岩气田几个关键井的页岩储层的总有机碳,并通过岩心样品的实测数据明确了计算精度,表明基于测井的TOC计算的重合率高达90.5%–91.0%。

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