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Hydraulic Dilation Stimulation to Improve Steam Injectivity and Conformance in Thermal Heavy Oil Production

机译:液压扩张刺激,以改善热重油生产中的蒸汽注入和一致性

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In thermal heavy-oil production,steam is injected to reduce oil viscosity and promote the less viscous oil flowing to the production wells.Steam injectivity and its conformance in the reservoir greatly impacts oil production and project economics.It is found that hydraulic dilation stimulation of heavy-oil reservoirs before steam injection can create a large and targeted stimulated reservoir volume for the steam to contact the heavy-oil phase.As a result,steam injectivity increases and steam conformance improves.These eventually translate to increased oil production and reduced steam/oil ratio,which has been proven in hundreds of wells worldwide.This paper describes relevant fundamental mechanisms and field performance. As a major novelty,the hydraulic stimulation avoids fracturing the reservoir,but seeks to cause dilation. If the reservoir is fractured,a linear conduit is created.Steam can easily break through to neighbouring wells and the steam conformance is poor.When dilation takes place,however,additional pore space is created in the rock matrix.This results in truly volumetric stimulation,which is helpful to increase the steam injectivity while ideal thermal conformance is also achieved.This paper illustrates these theoretical bases and their resultant positive field performance in assisting thermal heavy-oil production.
机译:在热重油生产中,注射蒸汽以降低油粘度,促进流动井流动的粘度较低。储层的喷射性和一致性地影响石油生产和项目经济学。发现液压扩张刺激蒸汽喷射前的重油储存器可以为蒸汽产生大而有针对性的刺激的储存量,以接触重油相。结果,蒸汽注射性增加,蒸汽一致性提高。这些最终转化为增加的油生产和减少蒸汽/石油比率已被证明在全球数百个井中。本文介绍了相关的基本机制和现场表现。作为一种重大的新颖性,液压刺激避免了储层的压裂,但寻求引起扩张。如果储存器被破裂,则会产生线性导管。蒸发可以容易地突破相邻的井,并且蒸汽一致性是较差的。然而,在扩张发生时,在岩石基质中产生额外的孔隙空间。这导致真正的体积刺激(这有助于提高蒸汽注射性,同时也实现了理想的热符合。本文说明了这些理论基础及其所得正场性能在辅助热重油生产方面。

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