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Grading evaluation and prediction of fracture-cavity reservoirs in Cambrian Longwangmiao Formation of Moxi area, Sichuan Basin, SW China

机译:SCH中国米西地区寒武纪龙旺大地区骨折洞穴储层评分评价与预测

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摘要

By using core, thin section, well logging, seismic, well testing and other data, the reservoir grading evaluation parameters were selected, the classification criterion considering multiple factors for carbonate reservoirs in this area were established, and the main factors affecting the development of high quality reservoir were determined. By employing Formation MicroScanner Image (FMI) logging fracture-cavity recognition technology and reservoir seismic waveform classification technology, the spatial distribution of reservoirs of all grades were predicted. On the basis of identifying four types of reservoir space developed in the study area by mercury injection experiment, a classification criterion was established using four reservoir grading evaluation parameters, median throat radius, effective porosity and effective permeability of fracture-cavity development zone, relationship between fracture and dissolution pore development and assemblage, and the reservoirs in the study area were classified into grade I high quality reservoir of fracture and cavity type, grade II average reservoir of fracture and porosity type, grade III poor reservoir of intergranular pore type. Based on the three main factors controlling the development of high quality reservoir, structural location, sedimentary facies and epigenesis, the distribution of the 3 grades reservoirs in each well area and formation were predicted using geophysical response and percolation characteristics. Follow-up drilling has confirmed that the classification evaluation standard and prediction methods established are effective.
机译:通过使用核心,薄截面,井测井,地震,良好的测试等数据,选择了储层分级评估参数,建立了考虑该地区碳酸盐储层的多种因素的分类标准,以及影响高度发展的主要因素确定了质量水库。通过采用地层微观图像(FMI)测井骨折腔识别技术和储层地震波形分类技术,预测了所有等级的储层空间分布。在汞注射实验中识别研究区域开发的四种类型的储层空间的基础上,使用四个储层分级评价参数,中值半径,裂缝腔开发区的有效孔隙度和有效渗透性建立了分类标准,之间的关系骨折和溶解孔隙发育和组装,研究区的储层被分为I II级骨折和腔腔级骨折和腔腔,骨折和孔隙型平均水库,IIA级骨孔型储层等级。基于控制高质量储层,结构位置,沉积相和表观的发展的三个主要因素,采用地球物理响应和渗滤特性预测了每个孔面积和形成的3等级储层的分布。后续钻探已经证实,建立了分类评估标准和预测方法是有效的。

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