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Integrated reservoir characterization and simulation studies in stripper oil and gas fields.

机译:剥离气田的综合储层表征和模拟研究。

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摘要

The demand for oil and gas is increasing yearly, whereas proven oil and gas reserves are being depleted. The potential of stripper oil and gas fields to supplement the national energy supply is large. In 2006, stripper wells accounted for 15% and 8% of US oil and gas production, respectively. With increasing energy demand and current high oil and gas prices, integrated reservoir studies, secondary and tertiary recovery methods, and infill drilling are becoming more common as operators strive to increase recovery from stripper oil and gas fields. The primary objective of this research was to support optimized production of oil and gas from stripper well fields by evaluating one stripper gas field and one stripper oil field.;For the stripper gas field, I integrated geologic and engineering data to build a detailed reservoir characterization model of the Second White Specks (SSPK) reservoir in Garden Plains field, Alberta, Canada. The objectives of this model were to provide insights to controls on gas production and to validate a simulation-based method of infill drilling assessment. SSPK was subdivided into Units A--D using well-log facies. Units A and B are the main producing units. Unit A has better reservoir quality and lateral continuity than Unit B. Gas production is related primarily to porosity-net-thickness product and permeability and secondarily to structural position, minor structural features, and initial reservoir pressure.;For the stripper oil field, I evaluated the Green River formation in the Wells Draw area of Monument Butte field, Utah, to determine interwell connectivity and to assess optimal recovery strategies. A 3D geostatistical model was built, and geological realizations were ranked using production history matching with streamline simulation. Interwell connectivity was demonstrated for only major sands and it increases as well spacing decreases. Overall connectivity is low for the 22 reservoir zones in the study area. A water-flood-only strategy provides more oil recovery than a primary-then-water-flood strategy over the life of the field. For new development areas, water flooding or converting producers to injectors should start within 6 months of initial production. Infill drilling may effectively produce unswept oil and double oil recovery. CO2 injection is much more efficient than N2 and CH 4 injection. Water-alternating-CO2 injection is superior to continuous CO2 injection in oil recovery.;The results of this study can be used to optimize production from Garden Plains and Monument Butte fields. Moreover, these results should be applicable to similar stripper gas and oil field fields. Together, the two studies demonstrate the utility of integrated reservoir studies (from geology to engineering) for improving oil and gas recovery.
机译:对石油和天然气的需求逐年增加,而探明的石油和天然气储量却在消耗。汽提气田补充国家能源供应的潜力很大。 2006年,汽提井分别占美国石油和天然气产量的15%和8%。随着能源需求的增加和当前高昂的石油和天然气价格,随着运营商努力增加从汽提油气田的采收率,综合的储层研究,二次和三次采油方法以及填充钻井正变得越来越普遍。这项研究的主要目的是通过评估一个汽提气田和一个汽提气田来支持从汽提油井田优化生产油气。对于汽提气田,我结合了地质和工程数据以建立详细的储层特征加拿大艾伯塔省Garden Plains油田的第二个白色斑点(SSPK)储层模型。该模型的目的是为控制天然气生产提供见解,并验证基于模拟的填充钻探评估方法。利用测井相将SSPK细分为AD单元。 A和B单元是主要生产单元。 A单元比B单元具有更好的储层质量和横向连续性。天然气产量主要与孔隙度-净厚积和渗透率有关,其次与结构位置,次要结构特征和初始储层压力有关。评估了犹他州纪念碑山油田的韦尔斯汲取区的绿河形成,以确定井间连通性并评估最佳采收策略。建立了3D地统计模型,并使用生产历史记录和流线模拟对地质实现进行了排名。井间连通性仅在主要砂岩中得到证实,随着井距的减小而增加。研究区域的22个水库区的总体连通性较低。在田间生命周期中,仅采用注水策略比先注水策略提供更多的石油采收。对于新开发区,应在初始生产后的6个月内开始注水或将生产商转换为喷射器。填充钻探可以有效地产生未驱油和双重采油。二氧化碳注入比氮气和CH 4注入要有效得多。在采油中水交替注入二氧化碳要优于连续注入二氧化碳。这项研究的结果可用于优化Garden Plains和Monument Butte油田的产量。此外,这些结果应适用于类似的汽提气田和油田。两项研究共同证明了综合油藏研究(从地质学到工程学)对改善油气采收率的实用性。

著录项

  • 作者

    Wang, Jianwei.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Geology.;Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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