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High vertical conformance steam injection petroleum recovery method

机译:高垂直一致性注汽采油方法

摘要

Viscous oil recovery methods employing well-to-well throughput steam injection are frequently less successful than anticipated because the process experiences poor vertical conformance, meaning that only a portion of the full vertical thickness of the oil saturated reservoir is contacted by the injected steam. Because the specific gravity of the vapor phase portion of saturated steam is substantially less than the specific gravity of formation petroleum fluids, the vapor phase steam channels across the upper portion of the formation and only contacts and displaces petroleum present in said upper portion of the formation, bypassing substantial amounts of petroleum in the lower portion of the formation. By separating saturated steam into two components, one predominantly liquid phase and one predominantly gaseous phase, and injecting the hot liquid into the upper portion of the formation and the vapor into the lower portion of the formation, substantially greater amounts of formation petroleum are contacted and recovered by steam. Steam may be separated into liquid and vapor phase components on the surface and injected by a separate flow path into separately completed intervals, or the separation may be accomplished in a downhole separator. The process may be applied using steam alone, or other gaseous and/or liquid phase additives to steam may be injected in the same manner.
机译:采用井间通量蒸汽注入的粘性油采收方法通常不及预期的成功,因为该过程的垂直顺应性差,这意味着注入的蒸汽仅接触油饱和油藏的全部垂直厚度的一部分。因为饱和蒸汽的蒸气部分的比重基本上小于地层石油流体的比重,所以蒸气相蒸汽在整个地层的上部中流动并且仅接触和驱替存在于所述地层的上部中的石油。 ,在地层下部绕过大量的石油。通过将饱和蒸汽分为两种成分,一种主要为液相,另一种主要为气相,并将热液体注入地层的上部,将蒸气注入地层的下部,使大量的地层石油接触并接触。通过蒸汽回收。蒸汽可以在表面上分离成液相和气相成分,并通过单独的流动路径注入到单独完成的间隔中,或者可以在井下分离器中完成分离。该方法可以单独使用蒸汽来施加,或者可以以相同的方式将其他气相和/或液相添加剂注入蒸汽中。

著录项

  • 公开/公告号US4088188A

    专利类型

  • 公开/公告日1978-05-09

    原文格式PDF

  • 申请/专利权人 TEXACO INC.;

    申请/专利号US19750644365

  • 发明设计人 RICHARD H. WIDMYER;

    申请日1975-12-24

  • 分类号E21B43/24;

  • 国家 US

  • 入库时间 2022-08-22 21:30:02

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