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Experimental Study on Explosion Pressure and Rock Breaking Characteristics under Liquid Carbon Dioxide Blasting

机译:液态二氧化碳爆破下爆炸压力与破岩特性的试验研究

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A liquid carbon dioxide blasting experiment was carried out under free field conditions, alongside a liquid carbon dioxide rock breaking experiment, to investigate explosion pressure variation and rock breaking characteristics under liquid carbon dioxide blasting. The experimental results show that the internal and external explosion pressures of the liquid carbon dioxide fracturing devices all rapidly increased at first, before attenuating vibrantly after blasting. When the explosion pressure was raised, the internal explosion pressure increased first exponentially and then linearly, while the external explosion pressure increased exponentially throughout. The duration time of the blasting effect stage was about 45 ms. Under the combined effect of jet impingement and a gas wedge of high-pressure carbon dioxide, the rock is subjected to tensile failure. The impact failure and the “gas wedge effect” of high-pressure carbon dioxide play a key role in the rock breaking of liquid carbon dioxide blasting technology.
机译:在自由场条件下进行了液态二氧化碳爆破实验,同时进行了液态二氧化碳破岩实验,以研究液态二氧化碳爆破下的爆炸压力变化和破岩特性。实验结果表明,液态二氧化碳压裂装置的内部和外部爆炸压力起初都迅速增加,然后在爆破后急剧衰减。当爆炸压力升高时,内部爆炸压力首先呈指数级增长,然后呈线性增长,而外部爆炸压力始终呈指数级增长。爆破效果阶段的持续时间约为45μms。在射流撞击和高压二氧化碳气楔的共同作用下,岩石遭受拉伸破坏。高压二氧化碳的冲击破坏和“气楔效应”在液态二氧化碳喷射技术的破岩过程中起着关键作用。

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