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Thinned coal distribution modeling based on integrated geological and geophysical data: Case study CBM resources in Central Palembang Sub-Basin

机译:基于综合地质和地球物理数据的薄煤分布建模:宫殿中环盆地煤层气资源

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The main workable coal measures are concentrated at two horizons sediments within the Miocene Muara Enim Formations (MEF). MEF coals are has a proper coal thickness and favorable depth for Coal Bed Methane (CBM) production, and become the main CBM target. Generally, coals are recognized of thin toward the east as they pinch out against the Sunda landmass. Coal presence and lateral coal distribution are the CBM essential elements. The research aim is to identify thin coal reservoir distribution using well and seismic data integration. Reprocessing seismic data before acoustic impedance (AI) inversion produces better results than non-reprocessing. In situations where the wells are located far away from seismic lines, calibration with logs is problematic, and inversion produces less than maximum results. The multi-attribute approach can optimize the results. Integration of the filtering, AI inversion, and then multi-attribute and neural network methods produce the best output to identify coal seams, their distribution, and continuity. The thickest coal, 6 m of thickness, was identified form 11 wells well data at depth 768 m with a total of 5 layers of coal (seam A, B, C, D, and E) in R5. Based on seismic modeling, the seam target was only seamed A with a total volume respectively 518 million m~3.
机译:主要的可行性煤炭措施集中在中茂梅花烯烯型(MEF)内的两种视野沉积物。 MEF煤具有适当的煤厚度和良好的煤层甲烷(CBM)生产深度,并成为主要的CBM目标。通常,煤炭被认为朝向东方的薄,因为它们缩小了Sunda Landmass。煤炭存在和横向煤炭分布是CBM基本要素。研究目的是使用井和地震数据集成来识别薄煤储层分布。在声阻抗(AI)反演之前,再处理地震数据产生的结果比非再处理产生更好的结果。在井位于远离地震线的情况下,用日志校准是有问题的,并且反演产生的效果小于最大结果。多属性方法可以优化结果。滤波,AI反转和多属性和神经网络方法的集成产生了最佳输出,以识别煤层,分配和连续性。最厚的煤,厚度为6米,在r5中鉴定在深度768m的深度768m深度的井数据中,在R5中总共5层煤(接缝A,B,C,D和e)。基于地震造型,煤层靶仅是缝合的总体积分别为518万M〜3。

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