Hydrodynamics of vapor-liquid flows in curvilined channels of separation devices of power plants

V. Tuz, N. Lebed, N. S. Kulesh
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Abstract

The main factor that affects the efficiency of the separation process is the lack of contact with the surface of the shutter when moving in the flow of small droplets of wet steam. This process depends on the physical and chemical properties of the wet vapor, the dispersion of the droplets, the parameters of the movement of the two-phase medium, adhesion and edge angle, and the geometry of the channel. Purpose. Determination of the limit modes of operation of separation shutter devices depending on the dispersion and quantity of droplet liquid, flow parameters and geometric characteristics of curved channels. Methodology. The methodology is based on the analysis of the physical model of the movement of a two-phase medium under the action of mass and gravitational forces in a curved horizontal channel. Findings. A mathematical model is presented for determining the trajectory of a liquid droplet in a curvilinear corrugation channel of the louvered package of a separator-superheater. The main conditions of film destruction and dynamic droplet break-up are defined. A method for expanding the range of stable operation of separation devices is proposed. Based on the obtained correlations, the design of the blind package is optimized. Originality. Based on the analysis of the physical model of the movement of a two-phase medium in a curved horizontal channel, a mathematical model was developed and the limit of capture of the dispersed phase was determined. Practical value. The presented results allow optimization of separation devices of boiler drums, horizontal steam generators and steam superheater separators of the II circuit of VVER-1000, fuel preparation systems of GTU.
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电厂分离装置曲线通道汽液流动的流体力学
影响分离过程效率的主要因素是当在湿蒸汽的小液滴流中移动时,与挡板的表面缺乏接触。这一过程取决于湿蒸汽的物理和化学性质、液滴的分散、两相介质的运动参数、粘附力和边缘角以及通道的几何形状。意图根据液滴的分散和数量、流动参数和弯曲通道的几何特性确定分离挡板装置的极限操作模式。方法论该方法基于对弯曲水平通道中两相介质在质量和重力作用下运动的物理模型的分析。调查结果。提出了一个数学模型,用于确定分离器过热器百叶窗包装曲线波纹通道中液滴的轨迹。定义了薄膜破坏和动态液滴破裂的主要条件。提出了一种扩大分离装置稳定运行范围的方法。基于所获得的相关性,对盲包装的设计进行了优化。独创性在分析弯曲水平通道中两相介质运动的物理模型的基础上,建立了数学模型,确定了分散相的捕获极限。实用价值。研究结果为VVER-1000二回路锅炉汽包、卧式蒸汽发生器和蒸汽过热器分离器、GTU燃料制备系统的分离装置的优化提供了依据。
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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
148
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