Numerical investigation of particle erosion characteristics in supercritical carbon dioxide in elbow pipe channels

Peng Xu, T. Zhou, Zhongguan Fu, J. Chen
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Abstract

The erosion of pipe walls by particle in supercritical carbon dioxide (SCO2) has a significant impact on the safe operation of the reactor, therefore, a simulation study of the wall erosion pattern of particulate matter within the SCO2 in the bent pipe channel was carried out. The research results show that SCO2 is extruded to the outer wall side under the action of centrifugal force. At the same time, two symmetrical secondary flows are formed in the elbow area, in the range of angle 60°–75°, the flow line is the most intensive and the secondary flow phenomenon is the most obvious; the erosion of particulate matter on the pipe is mainly concentrated in the outer side of the elbow area; with the increase of mass flow velocity, the erosion rate of particulate matter on the wall surface gradually increases. And the effect of increasing mass flow velocity on the erosion rate is nearly linear; the increase of particle diameter will lead to the first increase and then decrease of erosion; when the density of particles increases, the erosion rate of particles on the wall decreases, but the effect is low.
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弯头管内超临界二氧化碳颗粒侵蚀特性的数值研究
超临界二氧化碳(SCO2)中颗粒对管壁的侵蚀对反应器的安全运行有重要影响,因此,对弯管通道中SCO2内颗粒物质对管壁的侵蚀模式进行了模拟研究。研究结果表明:在离心力作用下,SCO2向外壁侧挤压;同时,在弯头区域形成两个对称的二次流,在60°~ 75°角度范围内,流线最密集,二次流现象最明显;管道上颗粒物的侵蚀主要集中在弯头区域外侧;随着质量流速度的增大,颗粒对壁面的侵蚀速率逐渐增大。质量流速度的增加对侵蚀速率的影响近似线性;颗粒直径的增大会导致冲蚀先增大后减小;随着颗粒密度的增加,颗粒对壁面的侵蚀速率降低,但效果较低。
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