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Well Test Simulation using Orthogonal Collocation

机译:使用正交搭配进行井测试仿真

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Welltesting is a flow of slightly compressible fluids in a porous media which is characterized by a set of nonlinear partial differential equations. Their solution is normally achieved analytically using Laplace transform or numerically through the use of numerical inverting methods of the Laplcace transform like Stehfest and Crump. Not all well test problems, however, are readily amenable to such treatment and an alternate approach like Orthogonal Collocation and Galerkin’s methods are efficient and can be easily employed. Until now, the application of these techniques has been limited. The primary objective of this paper is to investigate the feasibility of using Orthogonal Collocation on well test of a slightly compressible fluid in an ideal radial flow system. A well test simulation that treats the reservoir as a non-homogeneous, irregularly bounded system has been developed. Since this work was primarily concerned with the feasibility of Orthogonal Collocation simulation, no attempt was made to study a wide spectrum of well test problems. However, a few typical applications are presented and some of the results are compared with those derived from analytical and numerical inversion. This study presents a new way to numerically simulate flow of slightly compressible fluid which is solved rigorously with wellbore storage and skin. This paper shows that the use of Orthogonal Collocation method is feasible and that, in many cases, it results in solutions that are more realistic than those resulted from numerical inversion of Laplace transform. There are, however, certain disadvantages. For example, oscillation of the pressure derivative which can be overcome by using Orthogonal Collocation on Finite Element (OCFE) in which programming effort are usually in excess of that required by a finite- difference or numerical Laplace inversion scheme. Even so, it is felt that the potential of the technique is sufficient justification for this work and for a continuing effort to apply it to well test simulation problems.
机译:阱间是多孔介质中略微可压缩的流体流动,其特征在于一组非线性偏微分方程。通常通过使用Laplcace变换的数值逆转方法,使用Laplace变换或数值来分析它们的解决方案。然而,并非所有良好的测试问题都很容易适用于这种治疗和像正交搭配和Galerkin的方法中的替代方法是有效的并且可以容易地使用。到目前为止,这些技术的应用受到限制。本文的主要目的是研究使用正交搭配在理想的径向流动系统中略微可压缩流体的井测试的可行性。已经开发出一种良好的测试模拟,其将储存器视为非均匀的不规则有界系统。由于这项工作主要涉及正交串联模拟的可行性,因此没有尝试研究广泛的井测试问题。然而,提出了一些典型的应用,并将一些结果与来自分析和数值反演的那些进行比较。本研究提出了一种用井筒储存和皮肤进行稍微可压缩液体的数值模拟稍微可压缩流体的流动的新方法。本文表明,使用正交搭配方法是可行的,并且在许多情况下,它导致比拉普拉斯变换的数值反演所产生的解决方案。但是,存在某些缺点。例如,通过在有限元(OCFE)上使用正交搭配可以克服的压力衍生物的振荡,其中编程工作通常超过由有限差分或数值拉普拉斯反演方案所需的。即便如此,觉得这项技术的潜力是对这项工作的充分理由,并且继续努力将其应用于井测试模拟问题。

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