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A Simple and Reliable Method for Gas Well Deliverability Determination

机译:一种简单可靠的气井产能确定方法

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Multi-rate tests generally provide accurate values for gas reservoir formation parameters and deliverability equation coefficients. This type of results enables the engineer to make proper decisions on whether remedial work is required and the potential improvement that can be achieved. The multi-rate tests, such as isochronal or modified isochronal tests, are however cumbersome to conduct due to need for achieving stabilization or lengthy shut-in periods. The goal of this study has been to develop a simple and reliable method for gas well deliverability determination based on a single rate build-up or fall-off test. Traditionally, single rate tests have been analyzed using empirical backpressure equation using an average value for the exponent (n). Such approximations often provide inaccurate results and do not reveal any information regarding the conditions of the well. Alternatively, single rate tests can be analyzed using theoretical transient gas flow solutions. However, to accurately estimate mechanical skin factor and the deliverability equation coefficients from a single rate test, turbulence factor, β, must be available. There are numerous correlations in the literature for estimating β. These correlations do not provide unique results and calculated skin factor can range widely as a result. This study introduces the concept of the reservoirspecific β-factor. The methodology for developing a correlation for β factor using multi-rate tests has been developed. Once the β-factor correlation for a reservoir is established, there would be no need for additionalmulti-rate tests and single rate can be analyzed to provide accurate estimates of mechanical skin factor and deliverability equation coefficients. The accuracy of the proposed methodology has been verified through application in two separate reservoirs in the Appalachian Basin.
机译:多速率测试通常为气藏形成参数和可输送性方程系数提供准确的值。这种类型的结果使工程师能够就是否需要进行补救工作以及可以实现的潜在改进做出正确的决定。但是,由于需要达到稳定或较长的关闭时间,因此进行等时或修改等时测试等多速率测试很麻烦。这项研究的目标是开发一种简单可靠的方法,用于基于单倍速率建立或下降测试来确定气井产能。传统上,单倍率测试是使用经验背压方程式(使用指数(n)的平均值)进行分析的。这样的近似值通常会提供不准确的结果,并且不会显示有关井况的任何信息。或者,可以使用理论上的瞬态气流解决方案来分析单速率测试。但是,要从单次速率测试中准确估算机械集肤系数和可传递性方程系数,必须有湍流系数β。文献中有许多相关的β估计值。这些相关性不能提供唯一的结果,因此,计算得出的集肤因子的范围很广。本研究介绍了储层特有的β因子的概念。已经开发了使用多速率测试开发β因子相关性的方法。一旦建立了储层的β因子相关性,就无需进行其他多速率测试,并且可以分析单速率以提供对机械趋肤因子和可输送性方程系数的准确估计。通过在阿巴拉契亚盆地的两个独立油藏中的应用,已验证了所提出方法的准确性。

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