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Characteristic Analysis of Tight Oil Reservoir Combined with Fracturing Fluid Damage Experiment-A Case from Chang-7 Formation in Ordos Basin

机译:紧密储油液与压裂液损伤实验的特点分析 - 鄂尔多斯盆地Chang-7形成的案例

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Fracture is the main method of tight oil reservoir development.It transforms reservoir and brings on reservoir damage.Taking the Chang-7 formation in Ordos Basin as an Example,combined with physical properties,the casting thin sections,scanning electron microscope,X-ray diffraction(XRD),speed mercury penetration,CT and sensitivity test experiment analyse the characteristics of the tight oil reservoir and fracturing fluid damage relations.Chang-7 formation belongs to typical tight oil reservoir,filler content as high as 15%,easy to transport and expansion clay(illite and illite/smectite formation)is large;pores & throats are micro-nanometer level,the narrow and medium-sized reservoir throats occupy a larger proportion,pores connectivity are poor,throats are narrow.Chang-7 formation belongs to medium weak velocity sensitive(core permeability damage rate is between 0.33 to 0.48),strong water sensitivity(core permeability damage rate is between 0.14 to 0.28),easy water locked reservoir.Clay stabilizing agent,expansion agent and cleanup agent is added in the fracturing fluid formula,to reduce fracturing fluid damage;Fracturing fluid into the well critical salinity is higher than 10000 mg/L can prevent salt sensitivity damage;Fracturing fluid residue diameter between 2.25 to 8.39 u,m.There are filter cake damage,sedimentary,adsorption jams and bridging in tight reservoir,with low damage fracturing fluid is the main way to reduce the residual damage.
机译:骨折是钢筋油藏开发的主要方法。转化储层和储层损伤带来。鄂尔多斯盆地的Chang-7形成为例,结合物理性质,铸造薄段,扫描电子显微镜,X射线衍射(XRD),速度汞渗透,CT和敏感性测试实验分析了紧密的油藏和压裂液损伤关系的特点。张-7形成属于典型的紧密油藏,填料含量高达15%,易于运输和膨胀粘土(illite和illite /蒙脱石形成)很大;毛孔和喉咙是微纳米级,狭窄和中型的储层喉部占据较大比例,孔隙连接差,喉咙窄。张-7形成属于中弱速度敏感(核心渗透率损伤0.33至0.48),强水敏感性(核心渗透损伤率为0.14至0.28),容易水锁储存.CLA y稳定剂,膨胀剂和清洁剂在压裂流体配方中加入,以减少压裂液体损伤;压裂流体进入井临界盐度高于10000mg / L可以防止盐敏感性损伤;压裂液体残留直径为2.25至8.39 U,M.滤饼损坏,沉积,吸附卡纸和狭长水库的桥接,低损伤压裂液是降低残留损伤的主要途径。

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