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Production Performance of a Constant-Pressure Well in an Orthogonally Fractured Reservoir

机译:正交裂缝油藏恒压井生产性能

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摘要

We have analyzed the production performance of a constant-pressure well in a naturally fractured reservoir made up of orthogonal matrix blocks. The fractured reservoir is modeled as a double-porosity reservoir, in which interporosity flow is represented by an exact analytical transient influx function. Three distinct production modes can be recognized: Modes I, II, and III. In Mode I, the reservoir boundary is seen after flow in the matrix blocks has stabilized. In Mode II, this occurs while flow in the matrix blocks is still in the infinite-acting stage. In Mode III, the reservoir boundary is already seen before the influx from the matrix blocks has effectively set off. The effect of the natural fractures becomes increasingly evident with increasing mode number: from almost absent in Mode I, to significant in Mode II, and to dominant in Mode III. Mode I shows the best production performance, Mode III the worst. Each production mode can be subdivided into a number of distinct flow regimes. The production profiles in each of these regimes and the regime boundaries can be approximated by simple analytical formulas. These formulas may be used for production forecasting and for analyzing historical production decline.
机译:我们已经分析了由正交矩阵块组成的天然裂缝储层中的恒压井的生产性能。裂缝储层被建模为双孔隙储层,其中孔隙间的流动由精确的分析瞬态入渗函数表示。可以识别三种不同的生产模式:模式I,II和III。在模式I中,在矩阵块中的流量稳定之后可以看到储层边界。在模式II中,这发生在矩阵块中的流量仍处于无限作用阶段时。在模式III中,在有效地从矩阵区块涌入之前就已经看到了储层边界。随着模式编号的增加,天然裂缝的影响变得越来越明显:从模式I几乎不存在,到模式II显着,到模式III显性。模式I显示最佳的生产性能,模式III显示最差的生产性能。每种生产模式可以细分为许多不同的流态。可以通过简单的分析公式来估算这些方案中每个方案的生产概况和方案边界。这些公式可用于生产预测和分析历史产量下降。

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