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An Experimental Study on the Heat and Mass Transfer of Liquid Nitrogen in a Loose Medium

机译:松散介质中液氮热量和传质的实验研究

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摘要

Liquid nitrogen is a vital medium during the extinguishing and chilldown process of coal spontaneous combustion in coal mine goafs. In this paper, the heat and mass transfer of liquid nitrogen in a loose medium was investigated. A laboratory system including a temperature sensing system was designed and built to explore the effects of different nitrogen injection positions and angles on the chilldown effect. The results indicate that after liquid nitrogen injection, the temperatures in the liquid nitrogen flow area and the bottom of the model can be quickly reduced to −196 °C, which was the best chilldown effect zone. With the vaporization of the liquid nitrogen, the cryogenic nitrogen gradually diffused. At 20,000 s, the bottom temperature was about −63 °C, the middle was −30 °C, and the upper was 0 °C. When the model angle was 0°, the effective chilldown zone was the largest. As the angle increased, the effective chilldown volume and holding time decreased significantly. The model angle had a greater impact on the chilldown. For the position of nitrogen injection, the inlet was set slightly farther from the gas outlet’s position, leading to a larger coverage for the liquid nitrogen and cryogenic nitrogen chilldown. This study can provide a theoretical basis for the flow and chilldown of nitrogen injection in goafs.
机译:液氮是在煤自燃在煤矿采空区的灭火和chilldown过程中的重要介质。在本文中,在一个松散介质液氮的热与质量传递的影响。一个实验室系统包括温度感测系统的设计和建造,以探索对chilldown效果不同氮气注入的位置和角度的影响。结果表明,液态氮注射后,在液氮中流动区域的温度和模型的底部可以被迅速降低至-196℃,这是最好的效果chilldown区。与液体氮的蒸发,低温氮气逐渐地扩散。在20,000秒,塔底温度为约-63℃,中间为-30℃,并且上为0℃。当模型角为0°时,有效chilldown区为最大。随着角度增加,有效chilldown体积和保持时间显著降低。该模型的角度对的chilldown的影响更大。对于氮注入的位置,入口被从气体出口的位置稍远设置,导致对液氮和低温氮chilldown更大的覆盖。该研究可以提供氮气注入的空区中的流动和chilldown了理论基础。

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