Database technology for geological modelling of hydrocarbon reservoirs
Database technology for geological modelling of hydrocarbon reservoirs
批准号:
NE/N017218/1
负责人:
Nigel Mountney
金额:
$12.5万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2016
资助国家:
英国
项目状态:
已结题
起止时间:
2016 至 --
中文摘要
地下沉积岩的地质特征控制着其中存在的石油,天然气和/或水的数量(如碳氢化合物储层或含水层),以及这些流体将如何流动。石油地质学家建立三维数值模型,以确定石油和天然气的可能数量和流量以及最佳井位。这些模型最终决定了不同的碳氢化合物生产策略的成功。同样,水文地质学家开发相应的地质模型来预测水量或污染物迁移,以便为含水层开发和清理提供信息。还需要建立这些地质模型,以评估地下碳捕获和储存方案的可行性。在建立这些模型时,地质学家只能利用有限的直接地下数据来约束地下地质体的类型和几何形状,从而约束其流体流动特性。为了补充稀疏的直接数据,类似类型岩石的暴露露头,或沉积类似沉积物的现代沉积环境,可用作油气储层或含水层的“模拟物”。这些类似物提供了关于决定储层或含水层非均质性的地质特征的代用信息。在储层或含水层内,这些地质不均匀性对油井连通性、流速、生产行为和/或清理战略起着主要的控制作用,从而决定了储层可能生产多少石油或天然气,或污染物是否成功地从地下水中清除。需要定量模拟数据作为约束地下地质模型的输入。从数据库中导出这种类型的数据是地下建模工作流程的组成部分,但是由于存储在现有数据库中的数据的数量和质量有限,利兹大学的IP由三个不同的关系数据库组成,这些数据库包含有关构成地质构造块的岩石体积类型的模拟数据。储层或含水层的模型;每个数据库都与特定的地质背景有关。所有数据都以允许产生定量输出的格式存储,其形式可以输入用于构建地下非均质性模型的所有常用数值方法。IP技术在数据标准化、数量、质量和格式等方面均优于同类数据库。这些数据库实现了沉积物异质性的更全面表征,这一事实使现有建模算法所需的输出得以导出:这使得IP在同类产品中独一无二。然而,由于缺乏与用于生成和管理地下地质模型的软件平台(例如斯伦贝谢的Petrel)的集成,IP的当前价值受到限制。目前,没有任何现有的模拟数据库产生的输出格式容易消化的算法在海燕生成地质模型。因此,为数据库与Petrel的最佳整合开发一个接口是使知识产权适销对路的一个关键要求。理想的接口形式是Petrel“插件”软件组件。成功开发后,IP将能够轻松访问和应用大量高质量数据:该技术将帮助油气和水管理行业的地质学家和工程师生成地质敏感的储层和含水层模型。该项目将由Luca Colombera承担,他目前是利兹的博士后研究助理,并由沉积学家兼河流研究小组主任奈杰尔蒙特尼和Bill McCaffrey(沉积学家)监督。
英文摘要
The geological characteristics of subsurface sedimentary rocks control the amount of oil, gas and/or water present within them (as hydrocarbon reservoirs or aquifers), and how such fluids will flow. Petroleum geologists build three-dimensional numerical models to ascertain the likely amount and flow rates of oil and gas and optimum well locations. These models ultimately determine the success of different strategies of hydrocarbon production. Similarly, hydrogeologists develop corresponding geological models to predict water yield or contaminant transport, in order to inform aquifer exploitation and clean-up. The creation of these geological models is also required to assess the feasibility of programmes of underground carbon capture and storage. When these models are built, geologists have available only limited direct subsurface data with which to constrain the type and geometry of subsurface geological bodies with and thus their fluid-flow characteristics. To complement the sparse direct data, exposed outcrops of similar types of rocks, or modern sedimentary environments where comparable sediments are deposited, can be used as 'analogues' to hydrocarbon reservoirs or aquifers. These analogues provide proxy information regarding geological features that determine reservoir or aquifer heterogeneity. Within a reservoir or aquifer, these geological heterogeneities exert a primary control on well connectivity, flow rates, production behaviour and/or to clean-up strategies, thereby dictating how much oil or gas is likely to be produced from a reservoir, or whether contaminants are successfully removed from groundwater. Quantitative analogue data are required as input for constraining geological models of the subsurface. The derivation of this type of data from databases is an integral part of subsurface modelling workflows, but current approaches are inadequate because of the limited volume and quality of data stored in existing databases, and their current poor integration with existing modelling tools.The Leeds University IP consists of three different relational databases that contain analogue data about types of rock volumes that constitute the building blocks of geological models of reservoirs or aquifers; each database relates to a particular geological setting. All data are stored in a format that allows quantitative output to be produced, in forms that can be fed into all the common numerical methods used to build models of subsurface heterogeneity. The technology of the IP surpasses similar databases in terms of data standardisation, quantity, quality and format. The fact that a fuller characterisation of sedimentary heterogeneity is achieved by these databases enables the derivation of the output required by existing modelling algorithms: this makes the IP unique in its class. However, the current value of the IP is limited by the lack of integration with software platforms employed to generate and manage geological models of the subsurface, such as Schlumberger's Petrel. At present no existing analogue database produces output in a format readily digestible by the algorithms used in Petrel to generate geological models. Thus, the development of an interface for the optimal integration of the databases with Petrel is a key requirement for making the IP marketable. The ideal incarnation of the interface would be in the form of a Petrel 'plug-in' software component.Upon successful development, the IP will enable easy access and application of large volumes of high-quality data: this technology will aid geologists and engineers in the hydrocarbon and water-management industries in the generation of geologically sensible reservoir and aquifer models. The project will be undertaken by Luca Colombera, currently a post-doctoral research associate at Leeds, and supervised by Nigel Mountney, who is a sedimentologist and director of the Fluvial Research Group, and Bill McCaffrey (sedimentologist).
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DOI:
10.2110/jsr.2016.33
发表时间:
2016-05
期刊:
Journal of Sedimentary Research
影响因子:
2
作者:
[L. Colombera;M. N. Shiers;N. Mountney]
通讯作者:
L. Colombera;M. N. Shiers;N. Mountney
Quantitative characterization of the sedimentary architecture of Gilbert-type deltas
吉尔伯特型三角洲沉积结构的定量表征
DOI:
10.1016/j.sedgeo.2021.106022
发表时间:
2021
期刊:
Sedimentary Geology
影响因子:
2.8
作者:
[Budai S]
通讯作者:
Budai S
DOI:
10.1016/j.marpetgeo.2018.03.042
发表时间:
2018-05
期刊:
Marine and Petroleum Geology
影响因子:
4.2
作者:
[L. Colombera;N. Yan;T. McCormick-Cox;N. Mountney]
通讯作者:
L. Colombera;N. Yan;T. McCormick-Cox;N. Mountney
DOI:
10.1016/j.marpetgeo.2017.01.024
发表时间:
2017-04
期刊:
Marine and Petroleum Geology
影响因子:
4.2
作者:
[L. Colombera;N. Mountney;C. Russell;M. N. Shiers;W. McCaffrey]
通讯作者:
L. Colombera;N. Mountney;C. Russell;M. N. Shiers;W. McCaffrey
DOI:
10.1016/j.marpetgeo.2017.12.021
发表时间:
2018-03
期刊:
Marine and Petroleum Geology
影响因子:
4.2
作者:
[B. Besly;Hollie G. Romain;N. Mountney]
通讯作者:
B. Besly;Hollie G. Romain;N. Mountney
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