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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Experimental investigations of a new surfactant adding device used for mine dust control
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Experimental investigations of a new surfactant adding device used for mine dust control

机译:用于矿尘控制的新型表面活性剂添加装置的实验研究

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摘要

To guarantee the stable and quantitative adding of surfactant into the pressure pipe and not be affected by the inlet and outlet pressure changing, the method utilizing jet pump cavitation characteristics to add surfactant was proposed. Keeping pressure ratio lower than the critical pressure ratio, the adding quantity could remain unchanged. In order to improve the stabilities, reduce the pressure loss and improve the critical pressure ratio of the jet cavitation adding method, a new two-stage cavitation jet adding method and device were proposed, and the performance was investigated experimentally under different working flows and outlet pressures, and compared to the cavitation jet pump in this paper. The results showed that the negative pressure remained unchanged within a certain range of outlet pressure, then decreased gradually with the increase of outlet pressure for the new device, which was similar with the traditional one. Furthermore, the critical pressure ratio of the new device was larger than the traditional one, which indicated that the pressure loss for the new device was smaller and it was more stable as the adding amount of surfactant was constant. In addition, the critical pressure ratio could increase by reducing the additive proportion of surfactant. Based on the above contributions and field investigation, it is believed that the study will play an important role for automatic quantitative control. (C) 2018 Elsevier B.V. All rights reserved.
机译:为了保证稳定和定量的表面活性剂进入压力管,不受入口和出口压力变化的影响,提出了利用喷射泵空化特性添加表面活性剂的方法。保持压力比低于临界压力比,增加量可以保持不变。为了提高稳定性,降低压力损失并提高喷射空化添加方法的临界压力比,提出了一种新的两级空化喷射加法方法和装置,在不同的工作流和出口下实验研究了性能压力,并与本文的空化喷射泵相比。结果表明,在一定范围的出口压力范围内保持负压不变,然后随着新器件的出口压力的增加而逐渐降低,这与传统的输出压力相似。此外,新装置的临界比大于传统的压力比,表明新器件的压力损失较小,并且随着表面活性剂的添加量恒定,更稳定。此外,通过降低表面活性剂的添加比例可以增加临界压力比。基于上述贡献和实地调查,据信该研究将为自动定量控制发挥重要作用。 (c)2018 Elsevier B.v.保留所有权利。

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