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Monitoring and modelling 3-D ground movements induced by seasonal gas storage in deep reservoirs

机译:监测和模拟深层储层中季节性储气引起的3D地面运动

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摘要

Underground gas storage (UGS) in depleted hydrocarbon fields is a strategic practice to cope with the growing energy demand, and occurs in many places in Europe and North America. In response to summer gas injection and winter gas withdrawal the reservoir expands and contracts almost elastically, namely it "breathes", as a major consequence of the fluid pore pressure fluctuations. Depending on a number of factors, including the field burial depth, the difference between the largest and the smallest gas pore pressure, and the geomechanical properties of the injected formation and the overburden, the porous medium overlying the reservoir is subject to a three-dimensional deformation related to the cyclic motion of the land surface in both vertical and horizontal directions. We present a multidisciplinary methodology to evaluate the environmental impact of UGS from a geomechanical point of view in connection with the ground surface displacement that may cause some concern for the integrity of the existing engineered structures and infrastructures. Long-time records of injected/removed gas volume and fluid pore pressure, together with multi-year detection of vertical and horizontal west-east displacement of the land surface above the field by an advanced PSInSAR™ analysis have allowed calibration of a 3-D fluid-dynamic model and development of a 3-D transversally isotropic geomechanical model. The latter has been successfully implemented and used to reproduce the vertical and horizontal cyclical displacements, in the range 8-10 mm and 6-8 mm, respectively, measured between 2003 and 2007 above the "Lombardia" gas reservoir, northern Italy, where since 1986 a UGS program has been under way by Stogit S.p.A. (Eni), following an initial 5-year field production life.
机译:枯竭的油气田中的地下储气库(UGS)是应对不断增长的能源需求的战略做法,在欧洲和北美的许多地方都有发生。响应夏季气体注入和冬季气体抽取,由于流体孔隙压力波动的主要结果,储层几乎弹性地膨胀和收缩,即“呼吸”。取决于现场埋藏深度,最大气孔压力与最小气孔压力之差,注入地层和上覆岩层的地质力学特性等多种因素,覆盖储层的多孔介质要进行三维分析。与陆地表面在垂直和水平方向上的循环运动有关的变形。我们提出了一种多学科的方法,从地质力学的角度评估与地面位移有关的UGS的环境影响,这可能引起对现有工程结构和基础设施完整性的担忧。长期记录的注入/去除气量和流体孔隙压力,以及通过先进的PSInSAR™分析对地面上方地面垂直和水平西向东位移的多年检测,使得能够对3-D进行校准流体动力学模型和3-D横向各向同性地质力学模型的开发。后者已成功实施,并用于再现2003年至2007年在意大利北部“ Lombardia”气藏上方测得的垂直和水平周期性位移,范围分别为8-10 mm和6-8 mm。 1986年,在最初的五年现场生产寿命之后,Stogit SpA(Eni)正在进行了UGS计划。

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  • 来源
  • 会议地点 Santiago de Queretaro(MX)
  • 作者单位

    Department of Mathematical Methods and Models for Scientific Applications (DMMMSA), University of Padova,via Trieste 63,I-35121 Padova, Italy;

    Department of Mathematical Methods and Models for Scientific Applications (DMMMSA), University of Padova,via Trieste 63,I-35121 Padova, Italy;

    Department of Mathematical Methods and Models for Scientific Applications (DMMMSA), University of Padova,via Trieste 63,I-35121 Padova, Italy;

    Department of Mathematical Methods and Models for Scientific Applications (DMMMSA), University of Padova,via Trieste 63,I-35121 Padova, Italy;

    Department of Mathematical Methods and Models for Scientific Applications (DMMMSA), University of Padova,via Trieste 63,I-35121 Padova, Italy;

    Stogit S.p.A., Via dell 'Unione Europea 3, San Donato Milanese (MI), Italy;

    Stogit S.p.A., Via dell 'Unione Europea 3, San Donato Milanese (MI), Italy;

    Tele-Rilevamento Europa S.r.l. (TRE), Via V. Colonna 7,1-20149 Milano, Italy;

    Tele-Rilevamento Europa S.r.l. (TRE), Via V. Colonna 7,1-20149 Milano, Italy;

    Eni S.p.A. - Divisione EP, Via Emilia 1,1-20097 San Donato Milanese, Italy;

    Eni S.p.A. - Divisione EP, Via Emilia 1,1-20097 San Donato Milanese, Italy;

    Dip. di Elettronica ed Informazione, Politecnico di Milano, piazza Leonardo da Vinci 32,1-20133 Milano, Italy;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然资源合理开发与环境保护;
  • 关键词

    underground gas storage; 3-D geomechanical model; PSInSAR;

    机译:地下储气库; 3-D地质力学模型;卫星SAR;

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