Heat exchange under the longitudinal movement of wet steam in finning heat exchangers

Q3 Engineering
V. O. Tu, N. Lebed, N. S. Kulesh
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Abstract

The paper is devoted to the study on hydrodynamics and heat exchange of two-phase medium. While designing technological equipment, when the wet steam is used as the operating medium, the features of the interaction between liquid drops and the heat exchange surface are not considered in most cases. In full, this applies to steam turbines operating on the wet steam whose moisture content depends on the primary and secondary removal of liquid drops from the separation blocks. Purpose. Improving the method of calculation of recuperative heat exchangers, if wet steam is used as the operating medium. Methodology. It is based on the analysis of the physical model of moving the two-phase medium in the heat and mass exchange conditions, considering the design characteristics of the heat transfer surface. Findings. The correlation of critical values of two-phase flow parameters was obtained to determine the lower boundary of the process of plucking the drops from the liquid film depending on the irrigation density, geometric characteristics of the channel and physical properties of the liquid and gas. Correlations were obtained for pipes with longitudinal finning as the Π-shaped profile, based on which we recommend optimizing the geometric characteristics of longitudinal finning. Originality. Determining the limit modes of secondary removal formation during the movement of a two-phase medium in separation devices and the features of heat and mass transfer of wet steam in finning recuperative heat exchangers. Practical value. The presented results make it possible to optimize the design of recuperative heat exchangers with longitudinal Π-shaped finning.
翅片式热交换器中湿蒸汽纵向运动下的热交换
本文主要研究两相介质的流体力学和热交换。在设计技术设备时,当使用湿蒸汽作为运行介质时,大多数情况下都没有考虑液滴与热交换表面之间的相互作用特征。湿蒸汽的含水量取决于分离块中液滴的一次和二次脱除,这一点在以湿蒸汽为工作介质的蒸汽轮机中得到了充分体现。目的在使用湿蒸汽作为运行介质的情况下,改进换热器的计算方法。方法。基于在热量和质量交换条件下移动两相介质的物理模型分析,同时考虑传热表面的设计特性。研究结果。根据灌溉密度、通道的几何特征以及液体和气体的物理性质,获得了两相流参数临界值的相关性,以确定从液膜中拔出液滴过程的下边界。在此基础上,我们建议优化纵向翅片的几何特征。原创性。确定分离装置中两相介质运动过程中形成二次清除的极限模式,以及翅片换热器中湿蒸汽传热和传质的特征。实用价值。该研究成果有助于优化带有纵向Π形翅片的换热器的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
148
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