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A mathematical model for calculating rod-shaped proppant conductivity under the combined effect of compaction and embedment

机译:一种数学模型,用于计算压实和嵌入的综合效应下的杆状支撑剂导电性

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摘要

Hydraulic fracturing is a widely applied technique used to improve productivity in the oil and gas industry. Spherical proppants are commonly used in hydraulic fracturing, and massive studies have been conducted on proppants of this shape. Rod-shaped proppant has raised considerable interest in recent years, but few researches have been reported on the quantitative evaluation of the new shape proppant. In this paper, based on Hertz theory of elastic contacts, mathematical models were derived to calculate fracture conductivity, reduction in fracture aperture, proppant embedment, and deformation of rod-shaped proppants. The models for calculating the porosity of the fracture with proppants in loose and close packing modes were also established in this study. The results showed that, compared with spherical proppants, rod-shaped ones are theoretically more promising for hydraulic fracturing, especially under low elastic moduli and high closure pressures. From these derived models, rod-shaped proppant of big size might provide better fracture conductivity. It is concluded that the analytical models with correction coefficients could match the rod-shaped proppant embedment and fracture conductivity at different closure pressures. They are of great significance in selecting proppants and helpful to achieve high oil or gas production from hydraulic fracturing with proppants.
机译:水力压裂是一种广泛应用的技术,用于提高石油和天然气工业生产力。球形支撑剂通常用于水力压裂,并在这种形状的支撑剂上进行了大规模研究。近年来,棒状支撑剂升高了相当大的兴趣,但据报道了对新形状支撑剂的定量评估有很少的研究。本文基于赫兹的弹性触点理论,得出的数学模型计算裂缝电导率,降低骨折孔径,支撑剂嵌入和棒状支撑剂的变形。在本研究中也建立了计算骨折与支撑剂的骨折的模型。结果表明,与球形支撑剂相比,棒状物质对液压压裂有前途,特别是在低弹性模量和高闭合压力下。从这些衍生的模型,大尺寸的杆状支撑剂可以提供更好的断裂电导率。结论是,具有校正系数的分析模型可以在不同的闭合压力下匹配杆状支撑剂嵌入和断裂电导率。选择支撑剂并有助于实现高油或液压压裂与支撑剂的高油或天然气生产方面具有重要意义。

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