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Production performance of horizontal wells in gas-condensate reservoirs.

机译:凝析气藏水平井的生产性能

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摘要

A new method of establishing performance of vertical and horizontal wells completed in gas-condensate reservoirs has been developed. This method does not require relative permeability curves as a function of saturation, instead pressure transient well test data is used to establish the effective permeability as a function of pressure. Surface production data and the pressure transient data are then combined to forecast the well performance. Several new equations of effective permeability in two phase and three phase systems have been introduced from the definitions of producing gas-oil, water-oil, and gas-water ratios for two and three phase systems. Also the new method allows to determine the loss in gas well deliverability mathematically after the condensate has begun to liquefy. Thus well efficiency and damage factor can now be calculated analytically. Also well testing equations have been redefined in order to estimate the effective permeability as a function of pressure. Tiab's Direct Synthesis (TDS) technique of pressure transient analysis has also been applied to horizontal gas wells that can also be used for gas-condensate wells.; Gas condensate reservoirs go under two kinds of changes in their lifetime. The phase change and the physical properties change. Both the changes have been handled in this study using the pseudopressure function integral concept. In three phase system accumulating condensate, along with gas phase production, reduces the water production, a very positive impact. Much of the gas phase that goes in the liquid phase is recovered in the form of the liquid. Also it was observed that the mobile liquid condensate cleans the formation. This impact was observed from the continuously decreasing skin factor that was estimated as a function of pressure, an impact never seen before.; To predict the well performance in multiphase producing environment relative permeability as a function of saturation is used which requires the prior knowledge of the saturation at all the times. Saturation is usually estimated from material balance and reservoir simulation. Also relative permeability curves have to be developed in the laboratory on core samples, an expensive and time consuming process. For individual operators who usually operate on minimum margins of profit, obtaining such data can be an economic challenge. In Oklahoma, regulatory bodies require every well to be tested once a year. Thus a valuable pressure transient data is available on yearly basis. Using that data to forecast well performance can have a profound economic impact on the oil and gas industry. Thus relative permeability curves as a function of saturation have been completely eliminated and it has been shown in this study how to use pressure transient data to develop effective permeability as a function of pressure from the surface measured gas, oil, and water rates and then use it to forecast the well performance.; Finally several examples have been solved for two and three phase wells to show the use of the mathematical models developed.
机译:开发了一种建立凝析气藏完井垂直井和水平井性能的新方法。该方法不需要相对渗透率曲线作为饱和度的函数,而是使用压力瞬态井测试数据来确定有效渗透率与压力的关系。然后将地面产量数据和压力瞬变数据组合起来,以预测油井性能。从生产两相和三相系统的气油比,水油比和气水比的定义中,引入了几个新的两相和三相系统的有效渗透率方程。新方法还允许在凝结液开始液化之后以数学方式确定气井产能的损失。因此,现在可以通过分析计算出井效率和损伤系数。还重新定义了试井方程,以便估计有效渗透率随压力的变化。压力瞬变分析的 Tiab的直接合成 TDS )技术也已应用于水平气井,也可用于凝析气井。凝析气藏的寿命经历两种变化。相变和物理性质改变。在这项研究中,都使用伪压力函数积分概念来处理这两种变化。在三相系统中,冷凝水的累积以及气相的产生减少了水的产生,这是非常积极的影响。液相中的大部分气相都以液体形式回收。还观察到流动的液体冷凝物清洁了地层。从影响力不断降低的趋肤因子观察到了这种影响,这种影响是前所未有的。为了预测在多相生产环境中的油井性能,使用相对渗透率作为饱和度的函数,这需要始终了解饱和度。通常根据物料平衡和储层模拟估算饱和度。另外,必须在实验室中针对岩心样品开发相对渗透率曲线,这是昂贵且耗时的过程。对于通常以最低利润率运营的个体运营商而言,获取此类数据可能是一项经济挑战。在俄克拉荷马州,监管机构要求每年对每口井进行一次测试。因此,每年可获得有价值的压力瞬态数据。使用这些数据预测油井表现可以对石油和天然气行业产生深远的经济影响。因此,相对渗透率曲线作为饱和度的函数已被完全消除,并且在本研究中已显示了如何使用压力瞬变数据来开发有效渗透率,该有效渗透率是来自地面测得的气体,油和水的速率随压力的函数,然后使用它可以预测油井的性能。最后,已经解决了两相和三相井的几个示例,以显示所开发的数学模型的使用。

著录项

  • 作者

    Jokhio, Sarfraz Ahmed.;

  • 作者单位

    The University of Oklahoma.;

  • 授予单位 The University of Oklahoma.;
  • 学科 Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 343 p.
  • 总页数 343
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 石油、天然气工业;
  • 关键词

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