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首页> 外文期刊>Journal of Petroleum Science & Engineering >Experiment on rock breaking with supercritical carbon dioxide jet
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Experiment on rock breaking with supercritical carbon dioxide jet

机译:超临界二氧化碳射流破岩实验

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Rock breaking with SC-CO2 has the advantages of low threshold pressure and high rate of penetration, so it has attracted full attention. In order to clarify the law of rock breaking with SC-CO2 jet, and enable it to serve SC-CO2 drilling better, the SC-CO2 jet system for rock breaking was used to carry out the experiments, which demonstrated that jet pressure, jet temperature, confining pressure, jet distance, rotary speed of core samples and jet time are the main factors to influence the rock-breaking performance and efficiency. The results showed the effects as follows. Jet pressure and confining pressure are the direct factors to affect rock-breaking performance. With the increase of jet pressure, the rock-breaking efficiency increases gradually, while as the confining pressure increases, it decreases with constant jet pressure or has the maximum around the critical jet pressure with constant pressure difference. With the increase of jet temperature, the efficiency increases at first and then decreases, and the relationship curve showed in parabolic function. Under the experimental conditions in this paper, the optimal jet distance is about 3-4 times of nozzle diameter. The rotary speed of core sample has no substantial influence on the erosion depth, but on the average width or diameter of eroded grooves. The average width and the size of the eroded cuttings are smaller when the rotary speed is higher. The erosion depth increases but the trend gradually decreases with the jet time being prolonged. (C) 2015 Elsevier B.V. All rights reserved.
机译:SC-CO2破碎岩石具有阈值压力低和渗透率高的优点,因此引起了人们的广泛关注。为了弄清SC-CO2射流破岩的规律,使其更好地服务于SC-CO2钻井,采用了SC-CO2射流破岩系统进行了实验,证明了射流压力,射流温度,围压,射流距离,岩心样品的旋转速度和射流时间是影响破岩性能和效率的主要因素。结果显示出如下效果。射流压力和围压是影响岩石破碎性能的直接因素。随着射流压力的增加,破岩效率逐渐增加,而随着围压的增加,其在恒定射流压力下减小,或者在恒定射流压差下在临界射流压力附近具有最大值。随着射流温度的升高,效率先升高后降低,其关系曲线呈抛物线形。在本文的实验条件下,最佳喷射距离约为喷嘴直径的3-4倍。岩心样品的转速对侵蚀深度没有实质性影响,但对侵蚀槽的平均宽度或直径没有实质性影响。当旋转速度较高时,侵蚀的切屑的平均宽度和尺寸较小。随着喷射时间的延长,侵蚀深度增加,但趋势逐渐减小。 (C)2015 Elsevier B.V.保留所有权利。

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