首页> 外文期刊>The Journal of Supercritical Fluids >Penetration length studies of supercritical water jets submerged in a subcritical water environment using a novel optical Schlieren method
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Penetration length studies of supercritical water jets submerged in a subcritical water environment using a novel optical Schlieren method

机译:使用新型光学Schlieren方法研究淹没在亚临界水环境中的超临界水射流的穿透长度

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摘要

In hydrothermal spallation deep drilling a high-velocity, hot, supercritical water jet is directed towards the rock to induce fragmentation. One major challenge in the realization of this novel technique is the entrainment of comparatively cool, aqueous drilling fluid by the hot water jet, which can lead to significant heat losses before the hot jet's energy can be transferred to the rock. The present work quantifies such entrainment effects by determining penetration lengths of supercritical water jets injected into a cool, subcritical environment using a novel optical Schlieren method. Penetration lengths of supercritical jets were found to be equal to the injector's nozzle diameter and almost independent of the jet's temperature at the nozzle exit and the jet's mass flow under almost all experimental conditions investigated. A semi-empirical model adapted from steam jet studies confirmed these findings and indicates that heat and mass transfer are primarily controlled by turbulent mixing.
机译:在热液散裂的深层钻探中,将高速,热,超临界水射流引向岩石,以引起碎裂。实现这种新技术的一个主要挑战是热水射流夹带相对较凉的含水钻井液,这可能导致大量热量损失,然后再将热射流的能量转移到岩石上。本工作通过使用新颖的光学Schlieren方法确定注入到凉爽,亚临界环境中的超临界水射流的穿透长度来量化这种夹带效应。在几乎所有研究的实验条件下,发现超临界射流的穿透长度等于喷射器的喷嘴直径,并且几乎与喷嘴出口处的射流温度和射流的质量流量无关。来自蒸汽喷射研究的半经验模型证实了这些发现,并表明热量和传质主要受湍流混合控制。

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