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A Variable Rate Solution to the Nonlinear Diffusivity Gas Equation

机译:非线性扩散性气体方程的可变速率解决方案

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The hydraulic diffusivity equation that governs the flow of compressible fluids in porous media is nonlinear. Although gas well test analysis by means of the pseudo pressure function has become a standard field practice, the effect of viscosity and gas compressibility variation with pressure is often neglected. Moreover, in field operation, the gas well is submitted to a variable rate production in order to determine well/reservoir properties and an estimation of the absolute open flow (AOF). For slightly compressible fluids, variable rate can be properly handled by superposition in time. Unfortunately superposition cannot be offhand justified to gas reservoir due to its non-linear behavior. In this work a general solution which properly accounts for both fluid property behavior and variable rate is presented. The proposed solution, which is based on Green’s Functions method by considering the viscosity-compressibility product change as a non-linear source term, can handle variable gas rate for several well and reservoir geometries of practical interest. From the general solution, an analytical expression for variable rate tests of a fully penetrating vertical well in an infinite gas reservoir is derived. This expression is applied to a synthetic data set to calculate the pressure response for a buildup test in an infinite homogeneous reservoir. The results compared to a finite difference numerical simulator shows close agreement. It is also shown that the dimensionless pseudo pressure converges to the slightly compressible fluid solution for long shut-in times. Thus, at such long times, Horner analysis and log-log derivative plot can be applied to obtain good estimative of reservoir parameters as already discussed previously in literature.
机译:控制多孔介质中可压缩流体流动的液压漫射方程是非线性的。尽管通过伪压力函数的气井测试分析已成为标准的现场实践,但粘度和气体可压缩性变化的效果通常被忽略。此外,在现场操作中,将气井提交到可变速率生产,以便确定井/储存器的性质和绝对开放流动(AOF)的估计。对于略微可压缩的流体,可以通过叠加逐步处理可变速率。遗憾的是,由于其非线性行为,叠加不能归功于气体储层。在这项工作中,提出了一种适当占流体性能行为和可变速率的一般解决方案。所提出的解决方案,基于绿色的功能方法,通过考虑粘度可压缩产品作为非线性源期限,可以处理几种井和储层几何形状的可变气速。从通用解决方案中,推导出在无限气体储层中完全穿透垂直井的可变速率试验的分析表达。该表达式应用于合成数据集,以计算无限均质水库中的积累测试的压力响应。结果与有限差分数值模拟器相比显示了密切的协议。还示出了无量纲伪压力会聚到长时间的稍微可压缩的流体溶液。因此,在这么长的时间中,可以应用角分析和记录衍生图来获得如前所述在文献中已经讨论的储层参数的良好估计。

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