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砂岩孔隙型储层损害类型及严重程度时空演化的数值模拟

Numerical simulation of the temporal and spatial evolution of sandstone pore type reservoir damage types and severity.

作者信息

Jiang Guan-Cheng, Sheng Ke-Ming, He Yin-Bo, Yang Li-Li, Dong Teng-Fei, Sun Zhe, Jiang Kun-Li

机构信息

College of Petroleum Engineering, China University of Petroleum (Beijing), No. 18, Fuxue Rd, Changping District, Beijing, 102249, China.

MOE Key Laboratory of Petroleum Engineering, China University of Petroleum (Beijing), Beijing, 102249, China.

出版信息

Sci Rep. 2024 Oct 25;14(1):25401. doi: 10.1038/s41598-024-76383-0.

Abstract

During the oilfield development process, various factors can cause different types of reservoir damage, leading to reduced oil well production or even shutdown, and decreased water injection capacity in water wells, resulting in significant economic losses for the oilfield. However, formation damage control measures must be based on the quantitative diagnosis of the types and degrees of reservoir damage. This paper establishes a spatiotemporal evolution numerical model for 12 common types of damage during the oil and gas exploration and development process, based on the material balance theory and Fick's diffusion law in reservoir damage processes. This model achieves numerical simulation of the degree of various reservoir damage types in different spatiotemporal domains. The overall damage degree of a specific well's evolution with time and space is further simulated in simple superposition way. The sequential core flow experiment was carried out in the laboratory, and then compared with the calculation results. The accuracy is above 90%. Finally, using field test data, the simulation results show a 95% or higher degree of agreement with the actual field measurements, proving that the reservoir damage spatiotemporal evolution quantitative simulation technology established in this paper has high accuracy and practicality.

摘要

在油田开发过程中,各种因素会导致不同类型的储层损害,致使油井产量降低甚至停产,水井注水能力下降,给油田造成重大经济损失。然而,储层损害控制措施必须基于对储层损害类型和程度的定量诊断。本文基于储层损害过程中的物质平衡理论和菲克扩散定律,建立了油气勘探开发过程中12种常见损害类型的时空演化数值模型。该模型实现了对不同时空域内各种储层损害类型程度的数值模拟。通过简单叠加的方式进一步模拟了特定油井随时间和空间演化的总体损害程度。在实验室进行了顺序岩心流动实验,然后与计算结果进行对比,准确率在90%以上。最后,利用现场测试数据,模拟结果与现场实际测量结果的吻合度达到95%以上,证明本文建立的储层损害时空演化定量模拟技术具有较高的准确性和实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1d9/11512010/816544839932/41598_2024_76383_Fig1_HTML.jpg

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