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首页> 外文期刊>Journal of Petroleum Science & Engineering >Impact of un-propped fracture conductivity on produced gas huff-n-puff performance in Montney liquid rich tight reservoirs
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Impact of un-propped fracture conductivity on produced gas huff-n-puff performance in Montney liquid rich tight reservoirs

机译:未支撑裂缝电导率对Montney液体富液体储层生产气体Huff-N-Puff性能的影响

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Studies have shown that the gas huff and puff injection potentially perform better than the continuous gas flooding in enhancing the hydrocarbon recovery in the liquid rich tight reservoirs. During the fracturing stimulation, only part of the induced hydraulic fractures is propped because proppants cannot be carried to the fracture tips. Moreover, some secondary and tertiary fractures may be too narrow to accommodate any proppants. The conductivity of the unpropped fractures is highly dependent on the variation of the in-situ pressure and may be open and close periodically during the huff-n-puff cycles. In this study, the stress-dependent fracture conductivity and its impact on the produced gas huff-n-puff performance are investigated in a liquid rich tight reservoir, considering the existence of the large amount of the unpropped fractures. The experimental data of stress-dependent fracture conductivity is employed first to simulate the dynamic conductivity during the depletion and the gas huff and puff cycles. A reservoir model is then constructed and history-matched based on the reservoir fluid samples and the field production data collected from the Montney liquid rich tight reservoir in Western Canada. Performance of the produced gas huff-n-puff is examined in the targeted reservoir and results show that contributions of the unpropped fractures cannot be ignored, which leads to 7.8% more condensate (i.e., oil) production and 2.8% higher in barrel of oil equivalent (BOE), compared to the case with propped fractures only. The effects of complex fracture geometry and the cluster completion are also investigated and results show that the unpropped fracture contributions towards the condensate production and BOE are even more pronounced in the complicated scenarios. The condensate oil and BOE are 42.0% and 22.9% higher in complex fracture geometry case and 12.4% and 5.6% higher in the fractures with multiple clusters than those scenarios with propped fractures only. This paper provides a better understanding on the potential performance of enhanced hydrocarbons recovery in liquid rich tight gas reservoirs via gas huff-n-puff operations.
机译:研究表明,气体Huff和Puff喷射可能比增强液体富储层中的烃恢复在不断的气体洪水方面更好地表现优于连续气体泛滥。在压裂刺激期间,仅诱导液压骨折的一部分被支撑,因为支撑剂不能携带到骨折尖端。此外,一些次级和三级骨折可能太窄,以适应任何支撑剂。未分裂的裂缝的电导率高度依赖于原位压力的变化,并且可以在呼吸循环期间周期性地和闭合。在本研究中,考虑到存在大量未分裂的裂缝,在液体富含碎屑储层中研究了应力依赖性骨折导电性及其对所产生的气体Huff-N-Puff性能的影响。首先采用应力依赖性断裂电导率的实验数据来模拟耗尽期间的动态电导率和气体沟槽和泡芙循环。然后,基于储层液样品和从加拿大西部的Montney液体丰富的紧密水库收集的现场生产数据构建储存模型和历史匹配。在目标储层中检测生产的气体Huff-N-Puff的性能,结果表明未忽视未分裂的裂缝的贡献,这导致7.8%的冷凝物(即油)生产和桶的桶桶高2.8%相当于(BOE),与诸如支撑裂缝的情况相比。还研究了复杂骨折几何形状和聚类完成的影响,结果表明,在复杂的情景中,对冷凝水生产和蓬勃发展的未分裂骨折贡献更加明显。复合骨折几何壳体中冷凝物油和粘合剂的含量高出42.0%,22.9%,骨折的12.4%和5.6%高于那些仅具有支撑裂缝的场景。本文通过气沟-N-PUFF操作,更好地了解增强碳氢化合物在液体富含液体储层中恢复的潜在性能。

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