Rate/Pressure Transient Analysis of a Variable Bottom Hole Pressure Multi-Well Horizontal Pad with Well Interference

Hongyang Chu, X. Liao, Cao Wei, John Lee
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引用次数: 3

Abstract

Multi-well horizontal pads are common in unconventional reservoirs. With addition of infill wells and hydraulic fracturing, interference between multiple multi-fractured-horizontal wells (MFHWs) has become a serious issue. Current RTA workflows assume a single MFHW in the unconventional formation. This paper presents a new multi-MFHW solution and related analysis methodology to analyze targeted well rate performance in a multi-MFHW system. In this work, a semi-analytical equation describing multi-well pad in the Laplace domain with well interference is proposed. The proposed semi-analytical model can simulate the rate performance of a multi-well horizontal pad with variable BHP for a targeted well in the pad and different initial production durations for the offset well. From the constant BHP condition and Laplace transforms, we obtained multi-MFHW solutions for transient flow. We used superposition of various constant BHP solutions to study interference among various fractures and MFHWs. The variable BHP of the targeted well is achieved by a variable dimensionless BHP function in the Laplace domain without any convolution or deconvolution calculations. A systematic validation for the proposed method is conducted using a commercial numerical simulator for cases of different initial production times for offset MFHWs, multi-MFHWs with variable BHP. Through the total material balance of the multi-MFHW system, we can analyze a target well in the pad with this multi-MFHW analysis. Interference by offset wells often appears after pseudo-radial flow in the target well's hydraulic fracture. It causes the pressure derivative curve during elliptical and infinite-acting radial flow (IARF) to rise, as does the RNP derivative. The inverse semi-log derivative has the opposite trend. Well interference also makes the rate/pressure drop functions to deviate from initial straight lines in later stages. Sensitivity analysis of well spacing shows that "transition flow" will change from elliptical to formation linear flow between wells as well spacing increases and it can show the transitional flow characteristics in more common cases.
考虑井筒干扰的变井底压力多井水平井垫块速率/压力瞬态分析
多井水平垫层在非常规油藏中很常见。随着充填井和水力压裂的不断增加,多缝水平井间的干扰问题日益突出。目前的RTA工作流程假设在非常规地层中只有一个MFHW。本文提出了一种新的多井流场求解方法和相关的分析方法,用于分析多井流场系统的目标井速性能。本文提出了一种具有井间干扰的多井区Laplace域半解析方程。所提出的半解析模型可以模拟具有可变BHP的多井水平垫块的速率性能,并可以模拟邻井不同的初始生产持续时间。从恒BHP条件和拉普拉斯变换出发,得到了瞬态流动的多mfhw解。我们利用各种定BHP解的叠加来研究不同裂缝和MFHWs之间的干扰。目标井的可变BHP是通过拉普拉斯域中的可变无量纲BHP函数来实现的,不需要进行任何卷积或反卷积计算。利用商业数值模拟器对不同初始生产时间的偏置MFHWs和可变BHP的多MFHWs进行了系统验证。通过多mfhw系统的总物质平衡,我们可以用多mfhw分析来分析区块中的目标井。目标井水力裂缝发生伪径向流动后,常出现邻井干扰。它导致椭圆流和无限作用径向流(IARF)时的压力导数曲线升高,RNP导数曲线也升高。半对数逆导数有相反的趋势。井间干扰也会导致后期速率/压降函数偏离初始直线。井距敏感性分析表明,随着井距的增大,井间“过渡流”将由椭圆流转变为地层线性流,在较为常见的情况下能够体现过渡流特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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