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Deconvolution of Well test Data in Lean and Rich Gas Condensate, and Volatile Oil Wells below Saturation Pressure

机译:瘦浓度浓缩浓度浓缩浓缩液中的良好试验数据,以及低于饱和压力的挥发油井

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Deconvolution is a recent milestone in well test analysis which converts multirate pressure data into a single drawdown at constant rate. It yields a pressure derivative with a duration equal to the duration of the test, thus providing more pressure data to interpret than with conventional techniques; and gives access to the true radius of investigation of the test. In addition, the deconvolved derivative is free from distortions due to the pressure derivative calculation algorithm and from errors introduced by incomplete or truncated rate histories. Theoretically, deconvolution is only valid for linear systems. In practice, it is also used, with pseudo-pressures, for dry gas, and even for gas condensate and volatile oil below saturation pressure. As these systems are highly non-linear, there has been some concerns about the validity of such an approach. This paper investigates the use of deconvolution for gas condensate and volatile oil below saturation pressure. Using compositional simulation, it applies deconvolution to different reservoir geometries using two-phase pseudo-pressures, which linearize the reservoir-fluid system by replacing the two-phase fluid below saturation pressure by a single fluid equivalent. Comparison with deconvolution using single-phase pseudo-pressure (for gas condensate) or pressure (for volatile oil) shows that the resulting deconvolved derivatives are similar, and in particular exhibit similar late time behaviours, thus justifying the simpler pseudo-pressure (resp., pressure) approach. Simulation results were verified with actual data from vertical and horizontal wells in a number of gas condensate and volatile oil reservoirs.
机译:解卷积是在试井分析最近的里程碑,多速率压力的数据转换成以恒定的速率在单个缩编。它产生具有持续时间的压力导数等于该测试的持续时间,从而提供更多的压力数据比用常规技术来解释;并允许访问测试的调查的真正半径。此外,反卷积衍生物是从失真自由由于压力导数计算算法和从由不完整或截短的速率历史引入的误差。从理论上讲,反褶积仅适用于线性系统。在实践中,它也可用于与伪压力,用于干燥气体,甚至用于气体冷凝物和挥发油低于饱和压力。由于这些系统是高度非线性的,出现了对这种方法的有效性的担忧。本文研究了气体冷凝物和挥发油低于饱和压力的使用去卷积的。使用组分模拟,它适用去卷积应用于使用两阶段的伪压力,这通过由单个流体等效替换低于饱和压力的二相流体的线性化储层流体系统贮存器的不同的几何形状。比较使用单相伪压力(气体缩合物)或压力(挥发油)示出了所得到的反卷积衍生物是类似的,并且特别地显示出类似的晚的时间行为,因此证明简单的伪压力(相应解卷积。 ,压力)的方法。模拟结果与从垂直井和水平井在一些气体冷凝物和挥发油储层的实际数据进行验证。

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