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Studies on the Stability of the Foamy Oil in Developing Heavy Oil Reservoirs

机译:稠油油藏开发中泡沫油的稳定性研究

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In the process of natural energy depletion, foamy oil is characterized of low production Gas Oil Ratio, high oil viscosity, high daily production rate and high primary recovery factor. The stability of the foam turns out to be the prevailing factor that governs the life of the 'foamy oil'. To enumerate the main factors affecting the stability of the foam, a high-temperature-high-pressure visualized experiment model for foamy oil stability test was developed. A serial of experiments was conducted to evaluate the performance of the foam stability. The effects of oil viscosity, height of the oil column, dissolved gas content and dispersed gas were investigated and recorded. These experiments were conducted using a Hele-Shaw, a high pressure cell. The volume of foamy oil produced, either by a step reduction in pressure or by a gradual (linear) reduction in pressure, and its subsequent decay was observed, visually. The experimental results show that foamy oil stability increases with higher oil viscosity, higher oil column, higher dissolved gas content and higher pressure decline rate. Asphaltene content was not observed to increase the foamy oil stability significantly. The results also show that the foam quality of foamy oils is much lower than aqueous foams.
机译:在自然能源消耗过程中,泡沫油的特点是低产瓦斯油比,高油粘度,高日产率和高一次采收率。事实证明,泡沫的稳定性是决定“泡沫油”寿命的主要因素。为了列举影响泡沫稳定性的主要因素,建立了泡沫油稳定性试验的高温高压可视化实验模型。进行了一系列实验以评估泡沫稳定性的性能。研究并记录了油粘度,油柱高度,溶解气体含量和分散气体的影响。这些实验是使用Hele-Shaw高压电池进行的。视觉上观察到通过逐步降低压力或逐渐(线性)降低压力而产生的泡沫油的体积,并观察到其随后的衰减。实验结果表明,泡沫油的稳定性随着较高的油粘度,较高的油柱,较高的溶解气体含量和较高的降压率而增加。没有观察到沥青质含量显着增加泡沫油的稳定性。结果还表明,泡沫油的泡沫质量远低于水性泡沫。

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