The mobilization mechanism of low oil saturation reservoirs

Author:

Bai HaoORCID,Zhou FujianORCID,Wu JunlinORCID,Zhang Kun,Ding Zhiyuan,Xu HangORCID,Dong Yuepeng,Zhang Mengchuan,Yao Erdong

Abstract

After fracturing with a guar fluid system in Chang 8 oil reservoir, some wells have high oil production, and some have low production and even only produce water. Therefore, a comparative study is carried out in oil-producing and water-producing wells. The results show that: ① Organic wax adsorbed in oil-producing and water-producing well core pores accounts for 95.39% and 56.67%, respectively, making wells strong oil-wet. A certain proportion of inorganic salts and some other oil-wet organic compounds exist in water-producing wells. ② Under the reservoir conditions, the oil wettability of the water-producing well core is strong, and its original formation wettability is also oil-wet. The original wettability of the oil-producing well formation is water-wet, with oil production capacity. ③ The core residual oil saturation using the guar fluid is 24.7%–29.87%. This results in no oil phase permeability or difficulty to mobilize oil in most oil reservoirs. ④ Forced displacement can mobilize oil in large pores and has a significant effect in producing well, with mobilization efficiency of 53.49%. This article elucidates the wettability formation and crude oil mobilization mechanism of two types of wells, providing direction for the development of this type of reservoir.

Funder

Strategic Cooperation Technology Projects of CNPC and CUPB

National Science and Technology Major Project

National Natural Science Foundation of China

Propagation and control mechanism of hydraulic fracture network with combined mechanical-chemical effect under the high-stress condition in ultra-deep formation

Publisher

AIP Publishing

Subject

Condensed Matter Physics,Fluid Flow and Transfer Processes,Mechanics of Materials,Computational Mechanics,Mechanical Engineering

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