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页岩气藏多段压裂水平井压力降管理策略综述

Pressure Drawdown Management Strategies for Multifractured Horizontal Wells in Shale Gas Reservoirs: A Review.

作者信息

Xu Yingying, Liu Xiangui, Hu Zhiming, Duan Xianggang, Chang Jin

机构信息

University of Chinese Academy of Sciences, Beijing 100049, China.

Institute of Porous Flow and Fluid Mechanics, Chinese Academy of Sciences, Langfang 065007, China.

出版信息

ACS Omega. 2022 Apr 20;7(17):14516-14526. doi: 10.1021/acsomega.1c05850. eCollection 2022 May 3.

Abstract

The flow capacity of shale gas reservoirs is easily impaired during the depletion process due to strong stress sensitivity. Thereby, an adequate production system, namely, the managed pressure drop method, has been widely introduced to the industrial practice application by decelerating the wellbore pressure drop rate and ultimately improving the long-term production process. This work presents a review of the pressure drawdown management mechanisms for shale gas formations. However, clarifying the water-shale interaction physical chemistry process and developing a mathematical model that accurately describes the water-shale interaction mechanism remain a challenge. Moreover, different classifications of the managed production simulation research approaches are discussed in detail. Each approach has its own merits and demerits. Among them, numerical simulations are commonly seen in cognizance of characterizing the managed pressure drawdown production period but are found to be relatively time-consuming and also computationally expensive. An optimized theoretical model is therefore essential because it can lead to a precise estimation of the ultimate long-term production and capture instantaneously the actual shale gas reservoir depletion phenomenon with various production systems compared to other available methods. The key influence of managed pressured production for single wells in shale reservoirs is elaborated as well. As observed from the current review, an accurate description of the pressure drop management mechanism is crucial for the theoretical model of the pressure control production process for shale gas wells. The influence of water-rock interaction on the managed pressure drawdown mechanism cannot be ignored. There have thus been works to improve and enhance it for use in theoretical models for shale formations. On the other hand, the advancement of theoretical models presents an opportunity for better representation of the managed pressure drop production process.

摘要

由于强烈的应力敏感性,页岩气藏的渗流能力在衰竭过程中很容易受损。因此,一种适当的生产系统,即控制压力降方法,已通过减缓井筒压力降速率并最终改善长期生产过程而被广泛引入工业实践应用中。本文对页岩气地层的压力降管理机制进行了综述。然而,阐明水 - 页岩相互作用的物理化学过程并建立一个准确描述水 - 页岩相互作用机制的数学模型仍然是一个挑战。此外,还详细讨论了控制生产模拟研究方法的不同分类。每种方法都有其优缺点。其中,数值模拟在表征控制压力降生产周期方面较为常见,但发现其相对耗时且计算成本高。因此,一个优化的理论模型至关重要,因为与其他可用方法相比,它可以精确估计最终的长期产量,并能即时捕捉各种生产系统下实际页岩气藏的衰竭现象。还阐述了页岩储层中单井控制压力生产的关键影响。从当前的综述中可以看出,准确描述压力降管理机制对于页岩气井压力控制生产过程的理论模型至关重要。水 - 岩相互作用对控制压力降机制的影响不可忽视。因此,已经开展了一些工作来改进和完善它,以用于页岩地层的理论模型。另一方面,理论模型的进步为更好地描述控制压力降生产过程提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d661/9088784/de8b0f2355f8/ao1c05850_0002.jpg

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