超声对Hele-Shaw细胞内玻璃球运动影响的实验研究

A. Rakhimov, A. A. Valiev
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引用次数: 0

摘要

本文介绍了恒压降下超声影响(USI)对玻璃球填充Hele-Shaw细胞影响的实验研究结果,包括逐步收缩的情况。所考虑的过程代表了油藏中裂缝的物理模型。实验装置是利用可视化方法开发的微流体研究。暴露于USI和恒定的压降提供了紧密的包装和均匀分布的球粒。在厚度为200pm的模型中,通过150pm滤网过滤的玻璃球水的流速随着压降的增加而成比例地增加,而对于通过70pm滤网过滤的玻璃球模型,流速的增加更为显著,当压降为50kpa时,流速降低了5倍。在有收缩和没有收缩的体积模型中,USI对于球体的均匀填充是至关重要的。当球粒阻断收缩时,USI重新激活流动。因此,它是一种可靠的影响动态封堵效应的方法,有望创造旨在提高难以采出的石油储量在总产量平衡中的比例的技术。
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An experimental study of the ultrasound effect on the motion of glass spherules in Hele-Shaw cells
This paper presents the experimental study results for the effect of ultrasound influence (USI) on the filling of the Hele-Shaw cells with glass spherules at a constant pressure drop, including the case with a stepwise constriction. The process considered represents a physical model of fractures in an oil reservoir. The experimental set-up is developed with the use of visualization methods for microfluidic studies. Exposure to the USI and constant pressure drop provides the close packing and uniform distribution of the spherules. The flow rate of the water with glass spherules, which are sieved through a 150 pm strainer in the measured model with a thickness of 200 pm, increases proportionally with an increase in the pressure drop, while for the model with the spherules sieved through a 70 pm strainer, the increase is more significant, and the flow rate is five times lower for a pressure drop of 50 kPa. The USI is revealed to be crucial for the uniform filling with the spherules, both in the volumetric models with and without constriction. When the spherules block the constriction, the USI reactivates the flow. Thus, it is a reliable method of influencing the dynamic blocking effect, which is promising for creating the technology intended to increase the ratio of hard-to-recover oil reserves in the total production balance.
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66.70%
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