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首页> 外文期刊>Journal of loss prevention in the process industries >Design of single vertical tube falling-film evaporation basing on experiment
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Design of single vertical tube falling-film evaporation basing on experiment

机译:基于实验的单垂直管降膜蒸发设计

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An experimental study for fluid hydrodynamic characteristics in thin water films falling down the outside of a vertical tube was performed with the analysis of several factors about the uniformity and stability of the film. Liquid evaporation is of major interest for many fields in process engineering. One of these is chemical process engineering, where evaporation of liquids and generation of super heated steam is mandatory for numerous processes. Generally, this is performed by the use of classical pool boiling and evaporation process equipment, providing relatively limited performance. The performance of the film distributor will affect the production capacity and service life of the evaporator. In this publication a novel falling-film distributor which is used annular gap and inlet tube rotated tangentially 270° to guarantee the film uniformity is presented. Experimental data suggested that there is optimum annular gap distance is between 1.5 and 2.0 mm and the spray density should be controlled between 250 and 700 kg m~(-1) h~(-1). Several suggestions for evaporator design are proposed.
机译:通过分析有关薄膜均匀性和稳定性的几个因素,对落入垂直管外部的薄水薄膜的流体流体动力特性进行了实验研究。液体蒸发是过程工程中许多领域的主要兴趣。其中之一是化学过程工程,在许多过程中,必须进行液体蒸发和产生过热蒸汽。通常,这是通过使用经典的池沸腾和蒸发工艺设备来执行的,从而提供了相对有限的性能。薄膜分配器的性能将影响蒸发器的生产能力和使用寿命。在该出版物中,提出了一种新颖的降膜分配器,该分配器使用环形间隙和切向旋转270°的进口管以确保膜的均匀性。实验数据表明,最佳的环形间隙距离在1.5至2.0 mm之间,喷雾密度应控制在250至700 kg m〜(-1)h〜(-1)之间。提出了一些关于蒸发器设计的建议。

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