CAVITATION-EROSION STUDY IN ELBOW TUBES OF A LOW-PRESSURE EVAPORATOR OUTLET HEADER

IF 0.6 Q4 METALLURGY & METALLURGICAL ENGINEERING Metalurgija Pub Date : 2020-08-03 DOI:10.14203/metalurgi.v35i1.561
D. N. Adnyana
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Abstract

This paper presents the results of the cavitation-erosion study that occurred on elbow tubes that connected to the low-pressure (LP) Evaporator outlet header on a heat-recovery steam generator (HRSG) unit. Inside the elbow tubes flow the working fluid in the form of hot water with a pressure of 10 bar and a temperature of 160° C. Elbow tubes are made of low carbon steel, have an outer diameter of 31.8 mm and a wall thickness of 2.6 mm. Before entering into the elbow tubes, the working fluid warms up inside the evaporator tubes panel using hot flue gases coming from a gas turbine power plant unit. In this study there were 4 (four) pieces of post-service elbow tubes used, namely elbow tube with the connecting angle of 90°, 75°, 60° and 45°. The types of tests carried out included macroscopic tests, chemical analysis, metallographic examinations, hardness tests and EDS (energy dispersive spectroscopy) analysis. The study results obtained show that the elbow tubes undergo a process of thinning on the inner wall of the outer curvature with a rough and jagged surface appearance. This type of failure is known cavitation- erosion. The level of cavitation-erosion that occurs is very much influenced by the elbow’s connecting angle with the LP Evaporator header outlet. The greater the connecting angle or the smaller the radius of the elbow tube, the higher the level of cavitation-erosion that occurs. The high rate of cavitation-erosion experienced by the four elbow tubes is also related to the level of turbulence of the working fluid flow that occurs in the elbow tube. The increase in turbulence that occurs is caused by a decrease in the pressure of the working fluid in the evaporator panel so that some part of the working fluid turns into steam and produces a two-phase flow consisting of a mixture of water and steam
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低压蒸发器出口集箱弯头管空化冲蚀研究
本文介绍了热回收蒸汽发生器(HRSG)机组上连接低压蒸发器出口集管的弯管上发生的气蚀研究结果。在弯管内,工作流体以热水的形式流动,压力为10 bar,温度为160°C。弯管由低碳钢制成,外径为31.8 mm,壁厚为2.6 mm。在进入弯管之前,工作流体使用来自燃气轮机发电厂机组的热烟气在蒸发器管板内预热。在本研究中,使用了4(4)根服务后弯管,即连接角度为90°、75°、60°和45°的弯管。进行的测试类型包括宏观测试、化学分析、金相检查、硬度测试和EDS(能量色散光谱)分析。研究结果表明,弯管在外曲率的内壁上经历了一个变薄的过程,表面呈现粗糙和锯齿状。这种类型的破坏被称为空化侵蚀。发生的气蚀程度在很大程度上受到弯头与低压蒸发器集管出口的连接角度的影响。弯管的连接角度越大或半径越小,发生的气蚀程度就越高。四个弯管所经历的高气蚀速率也与弯管中发生的工作流体流的湍流水平有关。湍流的增加是由蒸发器面板中工作流体的压力降低引起的,因此工作流体的某些部分变成蒸汽,并产生由水和蒸汽的混合物组成的两相流
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来源期刊
Metalurgija
Metalurgija 工程技术-冶金工程
CiteScore
1.20
自引率
33.30%
发文量
64
审稿时长
4-8 weeks
期刊介绍: The journal Metalurgija is primary scientific periodical that publishes scientific papers (original papers, preliminary notes, reviewed papers) as well as professional papers from the area of basic, applicable and developing researching in metallurgy and boundary metallurgy areas (physics, chemistry, mechanical engineering). These papers relate to processing ferrous and non-ferrous metallurgy, treating investigating as well as testing of raw materials, semi products and products, especially in the area of improving new materials and possibilities of their implementation. The journal is the only national periodical of this kind in the Republic of Croatia and covers the scientific field of metallurgy, especially: physical metallurgy and materials; process metailurgy, (ferrous and non-ferrous); mechanical metallurgy (processing, power , etc.); related (adjoing) branches: mechanlcal engineering, chemistry, physics etc.
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