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Mechanism research on technical policy of liquid extraction depressurization development for buried hill reservoirs

机译:埋藏山区液体提取减压发展技术政策的机制研究

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Most of buried hill reservoirs are in the late stage of water flooding development, especially for this kind of reservoir with large water-oil volume ratio, it is more difficult to develop the residual oil in matrix system. This article presents a new idea about technical policy of extraction depressurization development which has not been studied in domestic and abroad, and analyses the major influence factor of liquid extraction depressurization by dual-media numerical simulation in depth. The results show that it can increase the oil production in matrix system to a greater extent by liquid extraction depressurization. The liquid extraction capacity is the most important factor which contains the effect of uniform speed liquid extraction, variable speed liquid extraction and periodic liquid extraction. Under the condition of keeping stable production, the larger the liquid volume extracted, the faster pressure dropped, and the more oil will be discharged in matrix system. According to these results, this paper suggests the reasonable technical policy of liquid extraction depressurization, and it is of great significance to obtain good effect of slowing down water cut and enhancing oil recovery in depressurization development of the buried hill reservoirs with high water cut and enough energy.
机译:大多数埋藏的山区水库都处于水利洪水开发的后期,特别是对于这种具有大的水量比例的储层,更难以在基质系统中开发残留油。本文提出了关于尚未在国内外研究的提取减压发展技术政策的新思路,并分析了双媒体数值模拟的液体提取减压的主要影响因素。结果表明,通过液体提取减压,它可以更大程度地增加基质系统中的油生产。液体提取能力是含有均匀液萃取,可变液萃取和周期性液体提取的效果的最重要因素。在保持稳定生产的条件下,提取的液体体积越大,降低压力越大,油状物的油量越多。根据这些结果,本文提出了液体提取减压的合理技术政策,从而使水减缓和提高埋地山储层减缓发展的良好效果具有重要意义,具有高水分剪切和足够高的山水储层的减压发展活力。

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