尼日尔三角洲kanga油田储层建模与岩石物性评价

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引用次数: 1

摘要

对尼日尔三角洲Kanga油田7口井的储层砂岩进行了岩石物理评价和储层建模。使用的方法是油藏建模和岩石物理评价中使用的标准方法。储层模拟结果表明,康嘎油田已识别出6条合成断裂和4条对立断裂,这些断裂是康嘎油田油气成藏的主要构造闭合。岩石物理分析表明,J100、K100和L100储层孔隙度分别为(25-27%)、(16-27%)和(11-17%)。模拟孔隙度显示,J100和K100储层中部孔隙度较高。低孔隙度/;记录在L100。J100储层含水饱和度在20 ~ 90%之间,最低含水饱和度分布在储层的NE、NW和中部。油水界面显示J100、L100储层有油气袋。J100、K100、L100储层饱和封闭体积分别为21,954.37、209,613.7、46,025.51。P90的估计容量分别为(4,648,755.06)STB、(16,545,452.38)STB及(9,976,551.38)STB。研究结果表明,该油田具有勘探油气的可行性。
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Reservoir modeling and petrophysical evaluation of kanga field onshore Niger delta.
Reservoir sands from seven wells in Kanga Field in the Onshore Niger Delta was subjected to both petrophysical evaluation and reservoir modeling. Methodologies used are standard methods used in reservoir modeling and petrophysical evaluation. Results from reservoir modeling, shows that six synthetics and four antithetic faults have been identified and these faults are the main structural closure for hydrocarbon accumulation in Kanga Field. Petrophysical analysis showed porosity ranging from (25-27%), (16-27%) and (11-17%) for J100, K100 and L100 respectively. Modeled porosity showed high porosity in J100 and the central part of K100 reservoir. While, low porosity/; is recorded in L100. Water saturation ranges from 20 to 90% in the J100 reservoir, the lowest water saturation value was at the NE, NW and central part of the reservoir. Oil water contact reveals pockets of hydrocarbon in J100 and L100 reservoir. The bulk volume of hydrocarbon saturation closure is (21,954.37) arceft, (209,613.7) acreft and 46,025.51) acreft for J100, K100, and L100 reservoirs respectively. The estimated volumetric for P90 are (4,648,755.06) STB, (16,545,452.38) STB and (9,976,551.38) STB respectively. This study de that the field is viable for hydrocarbon exploration.
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