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Thermal effect on the compression coefficient of heavy oil reservoir rocks

机译:热对稠油油藏压缩系数的影响

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摘要

The ever-decreasing oil resources receive more and more attention for the exploration and development of heavy oil reservoirs. Owing to the high viscosity and poor fluidity of heavy oil, it is necessary to use the method of injecting high-temperature fluid in the development process. But, this will cause a significant increase in the temperature in oil reservoir, and thus the compression coefficient of reservoir rock has a greater impact. The compression coefficient of heavy oil reservoirs at different temperatures was tested. The results show that the compression coefficient of rock is closely related to the nature of rock itself and its stress and temperature environment: the compression coefficient increases with the increase in rock porosity; the compression coefficient decreases with the increase in the effective confining pressure and increases with the increase in temperature. When the temperature is low, the increase in the compression coefficient is larger. As the temperature increases, the increase in the compression coefficient tends to decrease gradually. Because the temperature of the reservoir is higher than that of the ground, the influence of the temperature on the reservoir compression coefficient should be taken into account when carrying out the production forecast.
机译:不断减少的石油资源越来越受到稠油油藏勘探开发的关注。由于重油的粘度高且流动性差,因此在显影过程中必须使用注入高温流体的方法。但是,这将引起油藏温度的显着升高,因此,油藏岩石的压缩系数具有更大的影响。测试了不同温度下稠油油藏的压缩系数。结果表明,岩石的压缩系数与岩石本身的性质及其应力和温度环境密切相关。压缩系数随有效围压的增加而减小,随温度的升高而增大。当温度低时,压缩系数的增加较大。随着温度升高,压缩系数的增加趋于逐渐减小。由于储层温度高于地面温度,因此在进行产量预测时应考虑温度对储层压缩系数的影响。

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