首页> 外文期刊>Journal of Petroleum Science & Engineering >Application of TDS technique to developed reservoirs
【24h】

Application of TDS technique to developed reservoirs

机译:TDS技术在已开发油藏中的应用

获取原文
获取原文并翻译 | 示例
           

摘要

Well test interpretation methods for a single well in infinite reservoirs may not be suitable for those wells when their pressure is affected by other wells operating in the same reservoir.This effect becomes more significant as both the flow rate and the test duration increase.It is observed in drawdown tests when the well experiences an additional pressure decline due to production from other wells and,also,when the well produces under pseudosteady state before shut-in it for a buildup test.When pressure data are interpreted as recorded,estimation of reservoir parameters may not be accurate.Sliderl-3 introduced a technique for analyzing a pressure test that takes into account the effect of nearby active wells.Corrected or extrapolated pressures are obtained by applying the superposition principle to include the pressure decline contribution from the neighboring wells.Traditional semilog plots are then constructed and permeability and skin factor can be estimated,respectively,from the slope and intercept of their linear trend.A new technique,called TDS (Tiab's Direct Synthesis),was designed to analyze pressure and pressure derivative data without using type-curve matching.It uses characteristic features found on the derivative plot,so reservoir parameters are directly estimated.It depends upon how well the pressure derivative is calculated.If derivative is taken to the recorded pressure data the resulting curve will not be properly defined and the estimated parameters may be erroneous.Application of the TDS technique to wells in depleted reservoirs is presented here.The recorded pressure is extrapolated to include the contribution from other wells as suggested by Slider.Once the pressure derivative of the extrapolated data is taken,the TDS technique as discussed by Tiab [Tiab,D.1993.Analysis of Pressure and Pressure Derivative without Type-Curve Matching: 1- Factor de dano and Wellbore Storage.J.Pet.Sci.Eng.12 (1995),171-181.] can be readily applied.It was successfully tested with synthetic and field examples.A comparative analysis was carried out to see the effects when derivative is taken to uncorrected pressure data and the estimation of permeability,skin factor and drainage area.
机译:当无限大油藏中的单口井的压力受同一油藏中其他油井的压力影响时,单井的油井试解释方法可能不适合这些井,随着流量和测试时间的增加,这种影响变得更加明显。在压降测试中观察到,当油井由于其他油井的产量而导致额外的压力下降时,以及在关闭井进行增产试验之前,油井处于伪稳态时。当解释为记录压力数据时,储层估算参数可能不准确.Sliderl-3引入了一种分析压力测试的技术,该技术考虑了附近活动井的影响。通过应用叠加原理来获得校正或外推压力,其中包括相邻井的压力下降贡献。然后构建传统的半对数图,并可以分别从斜率和线性趋势的截距。设计了一种称为TDS(Tiab直接合成)的新技术,无需使用类型曲线匹配即可分析压力和压力导数数据。该技术利用了在导数图上发现的特征,因此储层参数为直接估计值取决于计算压力导数的程度,如果对记录的压力数据取导数,则将无法正确定义结果曲线,并且估计的参数可能是错误的。如Slider所建议,外推记录的压力以包括来自其他井的贡献。一旦获取了外推数据的压力导数,则由Tiab [Tiab,D.1993。讨论的TDS技术。压力和压力分析无需类型曲线匹配的导数:1- Factor de dano和Wellbore Storage.J.Pet.Sci.Eng.12(1995),171-181。]可以很容易地应用。进行了比较分析,以观察对未经校正的压力数据进行导数计算时的效果,以及对渗透率,皮肤因子和排水面积的估算。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号