欢迎登录材料期刊网

材料期刊网

高级检索

本文采用PIV两相同时测量方法,对低载荷气固两相双喷嘴对置撞击射流中的颗粒运动特性进行了研究.实验中轴向射流出口雷诺数为Re=14500,喷嘴内径为d=10 mm,喷嘴间距为L/d=12;颗粒相采用平均直径为dp=100μm的实心玻璃微珠,圆管加速段中的颗粒质量载荷控制为1%~4%.研究结果表明,低载荷下撞击射流中的颗粒间碰撞可忽略,颗粒浓度在喷嘴附近达到峰值;惯性使得颗粒轴向速度在穿入到反向射流前缓慢衰减,之后迅速减小;颗粒在撞击区形成高湍动区域,进而强化了颗粒相的混合效应.

Experimental investigation on the particle behavior of a dilute gas-particle flow in round opposed jets was conducted using a simultaneous two-phase PIV measurement technique.The Reynolds number (based on the bulk velocity U0 of the jet at the nozzle exit and nozzle inside diameter d) is 14500,and the nozzle spacing L/d is 12.Glass beads with the averaged diameter of 100 μm are used as dispersed phase,and three low mass loading ratios (φm) ranging from 1% to 4% are tested.It is found that the inter-particle collision can be neglected even at φm =4 % and the maximum particle concentration occurs near the nozzle exit.Before the particles penetrate into the reverse jet,due to its larger inertial,the axial velocity of the particle-phase decays slowly.After that,the axial velocity of the particle-phase decreases rapidly.In the impingement zone,the leftwards-and rightwards-moving particles form a high turbulent region,which reinforces particle mixing and also improves the performance of opposed jets in terms of heat and mass transfer.

参考文献

[1] Li Weifeng;Sun Zhigang;Liu Haifeng .Experimental and numerical study on stagnation point offset of turbulent opposed jets[J].Chemical Engineering Journal,2008(1/3):283-294.
[2] Wei-Feng Li;Tian-Liang Yao;Fu-Chen Wang .Study on Factors Influencing Stagnation Point Offset of Turbulent Opposed Jets[J].AIChE Journal,2010(10):2513-2522.
[3] 蒋贵丰,栗晶,吴丹,柳朝晖,郑楚光.气固两相圆湍撞击流的POD结构分析[J].工程热物理学报,2013(06):1101-1104.
[4] 吴丹,栗晶,柳朝晖,郑楚光.平面撞击流的直接数值模拟[J].工程热物理学报,2013(10):1878-1881.
[5] 孙志刚,李伟锋,刘海峰,于遵宏.同轴对称撞击流中的颗粒运动行为孙志刚[J].化学反应工程与工艺,2009(02):97-103.
[6] Chao Li;Zhenghua Dai;Weifeng Li.3D numerical study of particle flow behavior in the impinging zone of an Opposed Multi-Burner gasifier[J].Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems,2012:118-123.
[7] Li, J.;Wang, H.;Liu, Z.;Chen, S.;Zheng, C. .An experimental study on turbulence modification in the near-wall boundary layer of a dilute gas-particle channel flow[J].Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow,2012(5):1385-1403.
[8] 栗晶,蒋贵丰,王汉封,易超,柳朝晖,郑楚光.稀疏气固两相湍流边界层拟序结构变动特性[J].化工学报,2012(11):3407-3417.
[9] 栗晶 .水平槽道气固两相湍流变动的PIV实验研究和直接数值模拟[D].华中科技大学,2010.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%