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作 者:王小林[1,2] 于立君[2] 李治平[1] 姜凤光[3]
机构地区:[1]中国地质大学,北京100083 [2]中国石油勘探开发研究院,北京100083 [3]中石化勘探开发研究院,北京100083
出 处:《大庆石油地质与开发》2015年第6期54-56,共3页Petroleum Geology & Oilfield Development in Daqing
基 金:中国石油"十二五"油气田开发重大科技项目"不同类型油田开发技术经济政策及开发战略研究"(2011B-1103)
摘 要:特高含水期油水相对渗透率比与含水饱和度在半对数坐标中偏离直线关系,导致应用传统的水驱特征曲线时,曲线发生上翘,影响可采储量预测。基于特高含水期油水相对渗透率比与含水饱和度在半对数坐标上呈二项式函数变化的特征,推导了特高含水期一种新型的水驱特征曲线,表征为累计产水量与累计产油量在半对数坐标上呈二项式函数关系,并提出了与之相应的可采储量预测方法。以濮城油田沙一段油藏为应用实例,利用新方法计算了该油藏可采储量,并与其他方法计算结果进行了对比,结果接近。表明新方法对于特高含水期可采储量预测具有一定适用性。Relationship between the ratio (Kro/Krw) and water saturation (Sw ) on the semi-logarithm coordinate deviates from the straight line at the stage of the extra-high water cut, thus the adopted traditional water drive characteristic curves show up upwards and furthermore affect the prediction of the recoverable reserves. Based on the characteristic of the binomial function change between Kro/Krw) and Sw on the semi-log coordinate at the stage, a new water drive curve is derived, which is characterized by the binomial function relationship between the accumulative water and oil productions on the semi-log coordinate. In addition, the new predicting method for the corresponding recovera- ble reserves is presented. Taking Member Shal reservoir in Pucheng Oilfield in Reference 5 as an example, with the help of the new method, the recoverable reserves are calculated, and moreover comparing with the computed results in Reference 5, the results are accordant with each other. The achievements show that the new method is applicable and suitable for the prediction of the recoverable reserves at the stage of the extra-high water cut.
分 类 号:TE328[石油与天然气工程—油气田开发工程]
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