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Oil water contact analysis and hydrocarbon saturation estimation based on well logging data

机译:基于测井数据的油水接触分析和油气饱和度估算

摘要

Oil water contact analysis, porosity calculation and hydrocarbon saturation estimation is very important stage in reservoir characterization and hydrocarbon reserve estimation. Well logging data studied comprises of gamma ray log, formation density and compensated neutron logs, and electric logs. As a result, the lithology of the well is interbedded between sandstone and claystone. The hydrocarbon is trapped in ten porous zones that have the reservoir thickness vary between 11 - 90 feet. Oil water contact occured at the 2229 feet depth characterized by the rapid change of resistivity, and underneath became oil depletion zone. The highest hydrocarbon saturation encountered in the zone no .1 that is 85.7 % with 19 feet thick and formation temperature is 157.4 deg F. Porosity is affected by clay volume and their density, whereas the hydrocarbon saturation is strongly influenced by porosity and their value of resistivity log.
机译:油水接触分析,孔隙度计算和油气饱和度估算是储层表征和油气储量估算中非常重要的阶段。研究的测井数据包括伽马射线测井,地层密度和补偿中子测井以及电测井。结果,该井的岩性夹在砂岩和粘土之间。碳氢化合物被困在十个孔隙带中,这些孔隙带的储层厚度在11至90英尺之间变化。油水接触发生在2229英尺深度处,其特征是电阻率快速变化,并且在其下方成为油耗区。 No.1区域遇到的最高烃饱和度为85.7%,厚度为19英尺,地层温度为157.4华氏度。孔隙度受粘土体积及其密度的影响,而烃饱和度则受孔隙度及其值的强烈影响。电阻率测井。

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