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The attenuation of ultrasonic waves in coal: the significance in increasing their propagation distance

机译:煤中超声波的衰减:增加繁殖距离的重要性

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摘要

As a new technology, characterised by an absence of pollution and low energy consumption, ultrasonic waves have been widely used to promote the fracturing of oil-bearing and coal bed methane reservoirs, so as to increase their permeability. The propagation of ultrasonic waves in coals, and its influencing factors, is the key factors determining ultrasonic wave behaviour in promoting the permeability of coal seams. In this research, a device for measuring the attenuation of the ultrasonic waves in coal and rock masses was used to measure the attenuation coefficient of ultrasonic waves in coal briquettes with different properties. The standing wave method was used to fit the attenuation curves of the ultrasonic waves in the coal briquettes with different variables. Meanwhile, a dynamic strain instrument was used to record the energy attenuation experienced by ultrasonic waves in fractured coals with different moisture contents. The experimental results demonstrated that increases in the number of the fractures, and the content and size of the impurities in the coal briquettes, all led to an increased attenuation coefficient of the ultrasonic waves. Meanwhile, the attenuation coefficient was positively correlated with the cube of the number of fractures, and the content and size of the impurities. Besides, it was discovered that with the increase in the moisture content in coal briquettes, the attenuation coefficient of the ultrasonic waves increased firstly, followed by a decrease, and the energy consumed by the ultrasonic waves was increased firstly before a reduction as it penetrated through the fractured coals of the same length and increased moisture content. Additionally, it was found that by injecting water into the coals fractured by ultrasonic waves, the attenuation coefficient of the ultrasonic waves in coals can be reduced. Therefore, the propagation distance of the ultrasonic waves in coals was increased.
机译:作为一种新技术,其特征在于没有污染和低能耗,超声波已被广泛用于促进含油和煤层储层的压裂,从而提高渗透性。超声波在煤中的传播及其影响因素是确定超声波行为在促进煤层的渗透性方面的关键因素。在该研究中,用于测量煤和岩体中超声波衰减的装置用于测量具有不同性质的煤层中超声波的衰减系数。常设波法用于拟合具有不同变量的煤煤层中超声波的衰减曲线。同时,使用动态应变仪器来记录具有不同水分含量的断裂煤中超声波经历的能量衰减。实验结果表明,裂缝的数量和煤煤层中杂质的含量和尺寸的增加,所有这些都导致了超声波的衰减系数增加。同时,衰减系数与裂缝数的立方体和杂质的含量和大小呈正相关。此外,发现,随着煤煤层中的水分含量的增加,超声波的衰减系数首先增加,然后减少,并且超声波消耗的能量首先在减少渗透之前增加相同长度的裂缝煤和水分含量增加。另外,发现通过将水注入通过超声波破裂的煤中,可以减少煤中超声波的衰减系数。因此,煤中超声波的传播距离增加。

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