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A Straight-Line p/z Plot is Possible in Waterdrive Gas Reservoirs

机译:在水驱气藏中可以使用直线p / z图

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Field data and simulated models have revealed that in some cases waterdrive gas reservoirs can be mistakenly misidentified using material balance methods as depletion drive gas reservoirs causing a significant overestimation in gas reserves. The famous straight-line plot of p/z vs. Gp has been traditionally used to estimate original gas in place (and gas reserves) for depletion-drive gas reservoirs. A gas reservoir in contact with an aquifer in transient phase (unsteady-state) and producing under a certain production schedule can plot as a straight-line on a p/z plot masking the existence of an active aquifer and causing a significant overestimation in gas reserves. The authors in this paper simulate synthetic cases of gas reservoir/aquifer models using a forward model and an inverse model that were programmed in visual basic to show that the combination of certain rate schedules and the unsteady state nature of aquifers can cause a straight-line p/z plot in waterdrive gas reservoirs. The authors also demonstrate that the Havlena-Odeh1,2 Plot (also known by some authors in the liteariture as the Cole3 Plot) for those same cases will also mask the existence of an active transient aquifer giving the same value of overestimated origianal gas in place (OGIP) as that obtained from the p/z plot.
机译:现场数据和模拟模型表明,在某些情况下,使用物质平衡方法会误判水驱气藏,因为耗尽气藏会导致天然气储量的高估。传统上使用著名的p / z与Gp的直线图来估算耗尽驱动气藏的原始天然气(和天然气储量)。在过渡阶段(非稳态)与含水层接触并在一定生产进度下生产的气藏可以在ap / z图上以直线形式绘制,从而掩盖了活跃含水层的存在并导致对天然气储量的高估。本文的作者使用在Visual Basic中编程的正向模型和逆模型来模拟气藏/含水层模型的合成案例,以表明某些速率进度表和含水层的非稳态性质的组合会导致直线水驱气藏中的p / z图。作者还证明,对于这些相同的情况,Havlena-Odeh1,2绘图(也被一些文献中的作者称为Cole3绘图)也将掩盖活动瞬变含水层的存在,从而给出相同的高估原始气体值(OGIP),从p / z图获得。

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