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Foaming agent self-suction properties of a jet-type foam preparation device used in mine dust suppression

机译:矿井抑尘用喷射式泡沫制备装置的起泡剂自吸性能

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In this study, we introduce a jet-type foam preparation device for use in mine dust control, which can enhance the reliability and applicability of the foam production process compared with conventional foam generators. In order to elucidate the foaming agent self-suction properties of this novel foam generator, we used a self-built experimental setup to investigate the effects of the working pressure and outlet pressure on negative pressure (vacuum degree) during foaming agent suction, as well as the functional relationship between negative pressure and the foaming agent by adding parameters. We also studied the effects of the valve opening degree on the foaming agent flow rate and addition ratio. The results showed that the working pressure and outlet pressure affected the formation of negative pressure in a positive linear manner and a negative linear manner, respectively. Thus, the negative pressure increased linearly as the working pressure increased, whereas it decreased in a linear manner as the outlet pressure increased. There was also a quadratic relationship between the vacuum degree and foaming agent quantity with the piecewise characteristics of the growth process, where they increased slowly with a lower vacuum degree but increased rapidly with a higher vacuum degree. After creating a moderate negative pressure with the water jet, the foaming agent could be added automatically at a low flow rate with a low ratio via the regulating valve on the liquid suction hose. This study provides basic information that should facilitate the application of this novel foam preparation technique. (C) 2015 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在这项研究中,我们介绍了一种用于矿井除尘的喷射式泡沫制备设备,与传统的泡沫发生器相比,它可以提高泡沫生产过程的可靠性和适用性。为了阐明这种新型泡沫发生器的起泡剂自吸性能,我们使用了一个自建的实验装置来研究起泡剂抽吸过程中工作压力和出口压力对负压(真空度)的影响,以及通过添加参数来确定负压与发泡剂之间的功能关系。我们还研究了阀开度对发泡剂流量和添加比例的影响。结果表明,工作压力和出口压力分别以正线性和负线性方式影响负压的形成。因此,负压随着工作压力的增加而线性增加,而负压力随着出口压力的增加而线性减少。真空度和发泡剂数量与生长过程的分段特性之间也存在二次关系,真空度和发泡剂的数量在较低的真空度下缓慢增加,而在较高的真空度下迅速增加。在用水喷射产生适度的负压后,可以通过吸液软管上的调节阀以低流量,低比例自动添加发泡剂。这项研究提供了应有助于这种新型泡沫制备技术的应用的基本信息。 (C)2015化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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