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METHODOLOGIES AND APPLICATIONS OF CALCULATING STEAM SATURATIONS IN CASED HOLE

机译:壳体孔蒸汽饱和的方法和应用

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A number of qualitative and quantitative methods exist in the industry to monitor steam chest growth and reduction in cased hole wells in steamflooded reservoirs. It is challenging for an operator to select the method that is best suited technically and economically for a given steamflood. Five methods of quantifying steam saturations in cased hole wells are described: 1. Pulsed Neutron Capture (PNC) With Constant Sigma Matrix 2. PNC With Variable Sigma Matrix 3. PNC Service Company "X" 4. PNC Near/Far Count Overlay 5. Open Hole/Cased Hole Neutron Overlay The basis for these various quantitative methods are explained. Examples of applying these methods in active steamfloods in Indonesia and California are shown. These quantitative methods are compared to more traditional qualitative steam identification techniques. Limitations of calculating steam saturations using PNC tools include the accuracy by which various input parameters may be estimated, such as the macroscopic capture cross section Sigma of the rock matrix. A significant limitation of the open hole/cased hole neutron overlay method is accounting for temperature variation over time. Ultimately, the accuracy of calculated steam saturations directly impacts the accuracy of remaining/residual oil estimates, and thus in turn plays a significant role in steamflood optimization.
机译:行业中存在许多定性和定量方法,以监测蒸汽胸部生长和汽轮孔井中的壳体孔井中的储存。对于操作员来说,选择最适合技术和经济的方法是挑战。描述了五种量化壳体孔井中的蒸汽饱和度的方法:1。脉冲中子捕获(PNC)具有恒定的Sigma矩阵2. PNC具有可变Sigma矩阵3. PNC服务公司“X”4. PNC接近/远计数覆盖5。开孔/套管孔中子覆盖这些各种定量方法的基础。显示了在印度尼西亚和加利福尼亚州的活性汽油中应用这些方法的实例。将这些定量方法与更传统的定性蒸汽识别技术进行比较。使用PNC工具计算蒸汽饱和的限制包括可以估计各种输入参数的精度,例如岩石矩阵的宏观捕获横截面Sigma。开口孔/套管孔中子覆盖方法的显着限制是随着时间的推移计算温度变化。最终,计算的蒸汽饱和的准确性直接影响了剩余/残余油估计的准确性,从而在蒸汽污染优化中起着重要作用。

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