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首页> 外文期刊>Advances in Petroleum Exploration and Development >Petrophysical Properties’ Evaluation for Reservoir Characterization of AK Field, Onshore Eastern Niger Delta, Southern Nigeria
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Petrophysical Properties’ Evaluation for Reservoir Characterization of AK Field, Onshore Eastern Niger Delta, Southern Nigeria

机译:尼日利亚南部尼日尔河沿岸陆上AK油田的岩石物理性质评价

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In this study, well log derived petrophysical parameters of four (4) delineated clastic reservoirs in AK field, located onshore eastern Niger Delta have been effectively employed to characterize and assess hydrocarbon prospect potential of the field. Wireline well log data, such as gamma ray, resistivity log suite, Compensated Neutron Log (CNL) and Formation Density Compensated (FDC) were studied and analyzed for qualitative and quantitative evaluation of the formation units in the field. Lithologic discrimination aided the identification of sandy units, while fluid identification and discrimination defined the hydrocarbon saturated reservoir units in the field. Other derived parameters such as porosity, permeability, water saturation, hydrocarbon saturation, Net To Gross (NTG), net hydrocarbon pay, Bulk Volume Water (BVW) among others were employed to quantitatively characterize the delineated reservoir units, especially to establish their hydrocarbon potential. Four (4) sandy reservoir units, A1, A2, A3 and A4 which ranged in thickness from about 60-350 ft were identified from four exploratory wells AK-01, AK-02, AK-03 and AK 04 to be hydrocarbon bearing. The clastic reservoirs presented medium to relatively high formation porosity (0.27-0.38), low to average permeability value (61.6-685.5 mD) and significant to high hydrocarbon saturation (0.42-0.97). A plot of true formation resistivity values (Rt) against water saturation (Sw) indicate that all reservoir units encountered in well AK-01 are oil saturated. However, only reservoir sands A1 and A2 are predominantly oil reservoirs in well AK02 while sands A3 and A4 plot in oil and water field. In well AK-03, reservoir A1 contains only oil while the remaining reservoirs contain oil and water. The reservoir units as encountered in well AK-04 show slightly different fluid saturation pattern as reservoir A1 contains only oil, A4 is gas saturated while the remaining two reservoir units (A3 and A4) plot in the field of both water and oil.
机译:在这项研究中,位于尼日尔三角洲东部陆上AK油田的四(4)个划定的碎屑油藏的测井派生岩石物理参数已被有效地用于表征和评估该油田的油气勘探潜力。对诸如伽马射线,电阻率测井套件,补偿中子测井(CNL)和地层密度补偿(FDC)之类的有线测井数据进行了研究和分析,以对油田中的地层单元进行定性和定量评估。岩性判别有助于识别砂质单元,而流体判别和判别则限定了油田中饱和烃储集层单元。其他导出的参数(例如孔隙度,渗透率,水饱和度,烃饱和度,净总油量(NTG),净烃产量,散装水量(BVW)等)被用来定量描述所描绘的储层单元,特别是确定其油气潜力。从四个探井AK-01,AK-02,AK-03和AK 04中确定了四(4)个含沙储层单元A1,A2,A3和A4,其厚度范围约为60-350英尺,它们都含烃。碎屑岩储集层的储层孔隙度中等至相对较高(0.27-0.38),渗透率值较低至平均(61.6-685.5 mD),而烃饱和度则显着较高(0.42-0.97)。相对于水饱和度(Sw)的真实地层电阻率值(Rt)的图表明,在AK-01井中遇到的所有储层单元均为油饱和的。但是,只有油藏砂A1和A2主要是AK02井中的油藏,而油砂A3和A4则在油田和水领域中。在AK-03井中,储层A1仅包含油,其余储层包含油和水。在AK-04井中遇到的储层单元显示出略微不同的流体饱和度模式,因为储层A1仅包含油,A4处于气体饱和状态,而其余两个储层单元(A3和A4)则在水和油领域中绘图。

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