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Solid Particles Injection in Gas Turbulent Channel Flow
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作者 Abd Elnaby Kabeel Medhat Elkelawy +1 位作者 Hagar Alm-Eldin Bastawissi Ahmed Mohammed Elbanna 《Energy and Power Engineering》 2016年第12期367-388,共22页
This paper represents a review of the recent researches that investigate the behavior of the gas turbulent flow laden with solid particles. The significant parameters that influence the interactions between the both p... This paper represents a review of the recent researches that investigate the behavior of the gas turbulent flow laden with solid particles. The significant parameters that influence the interactions between the both phases, such as particle size, loading ratio and the gas velocity, have been extensively reviewed. Those parameters are presented in dimensionless numbers in which the applicability of studying its effect in terms of all circumstances of the gas turbulent channel flow at different condition is possible. The represented results show that the turbulence degree is proportional to the particle size. It was found that at the most flow conditions even at low mass ratio, the particle shape, density and size significantly alter the turbulence characteristics. However, the results demonstrate that the particle Reynolds number is a vital sign: the turbulence field becomes weaker if particle Reynolds number is lower than the critical limit and vies verse. The gas velocity has a strong effect on the particles settling along the channel flow and as a result, the pressure drop will be affected. 展开更多
关键词 Two-Phase flow Particle-Laden flow gas-solid channel flow Particle Size Effect
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竖直槽道中稠密气粒两相流动的瞬态结构
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作者 刘春嵘 郭印诚 王希麟 《工程热物理学报》 EI CAS CSCD 北大核心 2006年第4期622-624,共3页
本文采用流动显示方法对竖直槽道中稠密气粒两相流动的瞬态结构进行了研究,发现当表观气速高于管道流态化的最小临界速度但低于节涌状态向湍动状态过渡的临界速度时,槽道中没有明显的气泡出现,而是形成一条穿过颗粒密相区的气流通道。... 本文采用流动显示方法对竖直槽道中稠密气粒两相流动的瞬态结构进行了研究,发现当表观气速高于管道流态化的最小临界速度但低于节涌状态向湍动状态过渡的临界速度时,槽道中没有明显的气泡出现,而是形成一条穿过颗粒密相区的气流通道。当表观气速较低时,气流通道始终偏向槽道一侧。表现气速较高时,气流通道在槽道两侧摆动。在湍动状态下,槽道中的流态和管道中的流态相似。在快速流态化情况下,当颗粒循环量在一定范围时,槽道壁面附近会出现准静止的大尺度颗粒团。 展开更多
关键词 气粒两相流动 竖直槽道 流动显示 图像分析
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Numerical simulation of the gas-solid two-phase flow inside the multi-channel nozzle for the surface nanocrystallization induced by the ultrasonic particulate peening 被引量:1
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作者 ZHANG Yujun,LIANG Yongli and ZHANG Junbao Advanced Technology Division,Research Institute,Baoshan Iron & Steel Co.,Ltd.,Shanghai 201900,China 《Baosteel Technical Research》 CAS 2010年第4期3-7,共5页
Using a gas-solid two-phase model(a discrete phase model),the authors investigated the flow field inside the multi-channel nozzle for surface nanocrystallization(SNC)induced by the ultrasonic particulate peening(USPP)... Using a gas-solid two-phase model(a discrete phase model),the authors investigated the flow field inside the multi-channel nozzle for surface nanocrystallization(SNC)induced by the ultrasonic particulate peening(USPP).By computation,the velocity fields of both the gas and the solid phases were simulated and the track of the solid phase was analyzed in detail.It can be found that the velocities of the two phases are able to reach an ultrasonic level;meanwhile,the dispersion width of the solid phase at the nozzle exit is less than that of the gas phase.When particle diameters are less than 5 μm,there is a decreasing trend in the dispersion width of the solid phase with an increase in particle diameters.The trend becomes stable as the particle diameters are greater than 5 μm;in the meantime,the distribution of solid particles is near the axis of the jet flow.The optimal standoff distance between the nozzle and the substrate in the process of USPP is about 120 mm.Simulation results can help improve the design of mass-production-oriented multi-channel nozzles for SNC induced by USPP. 展开更多
关键词 USPP SNC multi-channel nozzle gas-solid two-phase flow numerical simulation
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