Experimental Study of Gas Entrainment by Free Jets of Water-Slurry Suspensions into Tubes of Shell-and-Tube Jet-Injection Apparatus

IF 0.3 Q4 ENERGY & FUELS Problemele Energeticii Regionale Pub Date : 2023-05-01 DOI:10.52254/1857-0070.2023.2-58-10
Y. Malakhov, A. Kuznetsov, A. G. Novoselov, A. V. Chebotar, I. Baranov, O. Rumyantseva, D. Mironova
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Abstract

In industries, the task of intensifying the process of dissolving gases in liquid media is relevant, since the time of the technological cycle depends on its course. Absorption processes affect the quality of the finished product and energy costs. In the food industry shell-and-tube jet injectors (SJT) are widespread, in which the mechanical injection of a free-falling jet of liquid surrounding its gas is applied. The aim of this work is to investigate the process of gas entrainment by free jets of water-malt slurry (WSS) in the pipes of the SJT. The set goal was achieved by solving the tasks: creating an experimental stand to study the process of atmospheric air injection by water-salt suspensions in the tubes of the SJT; developing a methodology for experimental studies; conducting research on the processes of gas injection by free liquid jets depending on the flow rate and liquid concentration. The most important result of the work is the establishment of graphical and mathematical dependences for the investigated WSS hydromodules, which allow calculating the flow rate carried away by the jet depending on the nozzle diameter. It is found that the gas phase entrainment by free suspension jets is influenced by the viscosity of the suspension, which depends on a number of technological parameters. The practical significance of the obtained results consists in the proposed methodology for calculating the design characteristics of SISA, providing the highest efficiency of its operation taking into account the properties of working environments and parameters of technological processes.
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壳管式喷射装置中水浆悬浮液自由射流夹带气体的实验研究
在工业中,强化气体在液体介质中溶解过程的任务是相关的,因为技术循环的时间取决于其过程。吸收过程影响最终产品的质量和能源成本。在食品工业中,管壳式喷射器(SJT)广泛应用,其中应用了围绕其气体的自由下落液体射流的机械喷射。本工作的目的是研究水麦芽浆(WSS)在SJT管道中的自由射流夹带气体的过程。通过解决以下任务实现了既定目标:建立一个实验台,研究SJT管内水盐悬浮液注入大气的过程;制定实验研究方法;对自由液体射流根据流速和液体浓度注入气体的过程进行了研究。这项工作最重要的结果是为所研究的WSS流体模块建立了图形和数学依赖关系,从而可以根据喷嘴直径计算射流带走的流速。研究发现,自由悬浮射流的气相夹带受悬浮液粘度的影响,悬浮液粘度取决于许多工艺参数。所获得结果的实际意义在于所提出的计算SISA设计特性的方法,在考虑工作环境特性和工艺参数的情况下,提供其最高运行效率。
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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
38
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