超临界CO2在90°弯管内的颗粒沉积特性

Shang Mao, T. Zhou, Wenbin Liu, Chunhui Xue, Yiyi Jiang
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摘要

90°弯管广泛应用于超临界CO2反应器等工业管中,在超临界CO2反应器运行过程中不可避免地会产生一些颗粒物质。基于DPM (Discrete phase model)模型,模拟了90°弯管内颗粒沉积特性。结果表明:流体进入弯道后,由于离心作用,外壁压力增大,内壁压力减小,内外壁之间形成二次流,内壁形成明显的低速区;随着粒径的增大,沉积速率逐渐增大,在粒径为60 μm时达到最大值。增加进口流量首先导致沉积速率急剧增加,然后缓慢增加。由于热泳作用,随着壁热流密度的增加,沉积速率显著增加。研究结果可为细颗粒在超临界CO2中的沉积运动特性提供参考。
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Particle Deposition Characteristics of Supercritical CO2 in a 90° Bend
90° bends are widely used in industrial tubes such as supercritical CO2 reactors, which inevitably generate some particle matters during the operation of supercritical CO2 reactors. The particle deposition characteristics in the 90° bend is simulated based on the DPM (Discrete phase model) model. The results show that when the fluid enters the bend, the pressure of the outer wall increases and the pressure of the inner wall decreases due to the centrifugal effect, forming a secondary flow between the inner and outer walls, and forming an obvious low velocity region in the inner wall. As the particle size increases, the deposition rate gradually increases, reaching a maximum at a particle size of 60 μm. Increasing the inlet flow rate first results in a sharp increase in the deposition rate and then a slow increase. The deposition rate is significantly increases with the increasing of wall heat flux due to the thermophoresis effect. The conclusions of this paper can provide reference for the deposition motion characteristics of fine particles in supercritical CO2.
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