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苏里格气田井下节流型气井冬季调峰配产方法
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作者 艾庆琳 徐运动 +2 位作者 伍勇 谢姗 何依林 《低渗透油气田》 2017年第1期92-95,共4页
苏里格气田是长庆气区主力调峰气田,该气田的气井采用并下节流模式生产,调峰生产需要拔取节流器,上加热炉生产。由于该气田储层非均性强,气井生产特征差异大,如何优选调峰气井及预测调峰配产对冬季调峰保供具有十分重要的作用。通... 苏里格气田是长庆气区主力调峰气田,该气田的气井采用并下节流模式生产,调峰生产需要拔取节流器,上加热炉生产。由于该气田储层非均性强,气井生产特征差异大,如何优选调峰气井及预测调峰配产对冬季调峰保供具有十分重要的作用。通过研究苏里格气田已投产老井的日产气、套压压降速率在调峰前后变化关系及新投产气井调峰配产与无阻流量关系,得出了井下节流型气井不同时期调峰产量快速预测的方法。并在苏里格气田S1区进行应用,其准确率高,可满足生产需求。 展开更多
关键词 气田调峰 井下节流型气井 调峰配产方法
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Fluids discrimination by ray-path elastic impedance inversion: A successful case from Sulige tight gas field
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作者 Wang Da-Xing Wang Hao-Fan +3 位作者 Ma Jin-Feng Wang Yong-Gang Zhang Na Li Lin 《Applied Geophysics》 SCIE CSCD 2019年第2期218-232,254,共16页
Existing seismic prediction methods struggle to effectively discriminate between fluids in tight gas reservoirs,such as those in the Sulige gas field in the Ordos Basin,where porosity and permeability are extremely lo... Existing seismic prediction methods struggle to effectively discriminate between fluids in tight gas reservoirs,such as those in the Sulige gas field in the Ordos Basin,where porosity and permeability are extremely low and the relationship between gas and water is complicated.In this paper,we have proposed a comprehensive seismic fluid identification method that combines ray-path elastic impedance(REI)inversion with fluid substitution for tight reservoirs.This approach is grounded in geophysical theory,forward modeling,and real data applications.We used geophysics experiments in tight gas reservoirs to determine that Brie's model is better suited to calculate the elastic parameters of mixed fluids than the conventional Wood’s model.This yielded a more reasonable and accurate fluid substitution model for tight gas reservoirs.We developed a forward model and carried out inversion of REI.which reduced the non-uniqueness problem that has plagued elastic impedance inversion in the angle domain.Our well logging forward model in the ray-path domain with different fluid saturations based on a fluid substitution model proved that REI identifies fluids more accurately when the ray parameters are large.The distribution of gas saturation can be distinguished from the crossplot of REI(p=0.10)and porosity.The inverted ray-path elastic impedance profile was further used to predict the porosity and gas saturation profile.Our new method achieved good results in the application of 2D seismic data in the western Sulige gas field. 展开更多
关键词 tight gas reservoir ray-path elastic impedance fluids identification rock-physical model gas saturation inversion
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