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首页> 外文期刊>Natural resources research >Prospect Analysis and Hydrocarbon Reservoir Volume Estimation in an Exploration Field, Shallow Offshore Depobelt, Western Niger Delta, Nigeria
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Prospect Analysis and Hydrocarbon Reservoir Volume Estimation in an Exploration Field, Shallow Offshore Depobelt, Western Niger Delta, Nigeria

机译:勘探场,浅海上Depobelt,尼日利亚西部浅滩探矿场勘探分析与碳氢化合物储层估计

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摘要

The daunting challenge in the exploration and production of oil and gas in the face of continual rise in the world's energy consumption has long been how to economically recover bypassed reserves within existing assets. This research is focused on the analysis of prospects and volumetric estimation of the hydrocarbon reservoirs delineated within an exploratory field using 3D seismic data and suites of wireline logs. The prospectivity of the delineated reservoir was carried out using seismo-structural interpretation and formation evaluation towards the assessment of the prolific hydrocarbon occurrence within the field. The reservoirs have porosity (0.29-0.32) for H1, (0.20-0.31) for H2 and (0.30-0.40) for H3 and the average computed hydrocarbon saturation of (0.31-0.62) for H1, (0.16-0.52) for H2 and (0.64-0.73) for H3, hydrocarbon pore volume (HCPV) of 28,706.95, 33,081.2 and 45,731.49 barrels for H1, H2 and H3, respectively, while the estimated stock tank oil initially-in-place (STOIIP) range (136.8-140.73) MMSTB for H1, (36.77-489.64) MMSTB for H2 and (166.62-308.14) MMSTB for H3. The observed porosity and hydrocarbon saturation for the delineated reservoirs as well as the estimated hydrocarbon pore volume and storage total oil in place indicate that the reservoirs are highly prolific. The study has therefore contributed to the understanding of hydrocarbon resource potential within the study area.
机译:在世界能源消耗持续上升面对石油和天然气勘探和生产方面的艰巨挑战已经是如何在现有资产中经济恢复旁路储备。本研究专注于使用3D地震日志套件在探索领域中描绘的烃藏的前景和体积估计分析。使用地震结构解释和形成评估进行了划清液储存器的前瞻性,并对现场的多产烃造成的评估进行了评价。对于H3,H2的H1,H1(0.20-0.31)的孔隙率(0.29-0.31),H3的平均计算的烃饱和(0.31-0.62)的H2,H2和(0.64-0.73)对于H3,烃孔体积(HCPV)为28,706.95,33,081.2和45,731.49桶,分别为H1,H2和H3,而估计的储备油最初(STOIIP)范围(136.8-140.73)用于H1的H1的MMSTB,H2和(166.62-308.14)MMSTB的H3。用于描绘储存器的观察到的孔隙率和烃饱和度以及估计的烃孔体积和储存总油状况显示,储层是高度的。因此,该研究有助于了解研究区域内的碳氢化合物资源潜力。

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