Pressure losses investigation at boiling two-phase flow movement in inclined pipes of a marine refrigeration machine evaporator

V. G. Bukin, A. I. Andreev, Roman Romanovich Minofyev
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Abstract

The study of pressure losses at boiling two-phase flow movement in vertical and inclined pipes of evaporators of ship refrigeration units is carried out. The study of the ascending two-phase flow is promising from the point of view of practical application. Such a movement is typical for various types of industrial heat exchange equipment, including for the development of promising types of evaporators, for example, vertical apparatuses for ships in which internal boiling of the refrigerant occurs. A methodology has been developed and an experiment has been set up to study the processes in the steam generating channels of refrigeration units at various angles of inclination with a fixed height. At the same time, the length of the channel changed, it became possible to analyze friction losses. A new approach has been applied that brings the model as close as possible to the actual boiling process, taking into account the constant increase of steam in the channel. Experimental studies have been carried out and data on pressure losses have been revealed when the angle of inclination of the steam generating channel changes. The main dependences and various components of hydraulic resistances during the movement of a boiling two-phase flow are presented. Based on the data obtained, the justification of ship evaporators transition of refrigeration units to the vertical arrangement of the heat exchange steam generating beam is proved. The results obtained indicate that an increase in the slope of the pipe, provided that the height is maintained, leads to an increase in pressure losses. Applicability to marine refrigerating machines has been determined – the transition to vertical apparatuses has advantages, primarily in reducing pressure losses. The obtained set of data allows to recommend the design of vertical evaporators for auxiliary ship installations.
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船用制冷机蒸发器倾斜管道中沸腾两相流运动的压力损失调查
对船舶制冷装置蒸发器垂直和倾斜管道中沸腾两相流运动时的压力损失进行了研究。从实际应用的角度来看,对上升两相流的研究很有前景。这种运动对于各种类型的工业热交换设备都很典型,包括对于开发前景广阔的蒸发器类型,例如,制冷剂内部沸腾的船舶垂直设备。我们开发了一种方法,并进行了一项实验,以研究在固定高度、不同倾角的制冷设备蒸汽发生通道中的过程。与此同时,通道的长度也发生了变化,因此可以对摩擦损失进行分析。我们采用了一种新方法,使模型尽可能接近实际的沸腾过程,同时考虑到蒸汽在通道中的持续增加。我们进行了实验研究,揭示了蒸汽产生通道的倾斜角度发生变化时的压力损失数据。文中介绍了沸腾两相流运动过程中水力阻力的主要依赖关系和各种成分。根据所获得的数据,证明了船用蒸发器制冷机组过渡到垂直布置热交换蒸汽发生梁的合理性。所得结果表明,在保持高度的前提下,管道坡度的增加会导致压力损失的增加。已确定其适用于船用制冷机 - 过渡到垂直设备具有优势,主要是在减少压力损失方面。根据所获得的一组数据,可以建议设计用于辅助船舶装置的垂直蒸发器。
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