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基于壁面射流的虚拟冲击式采样分离器的优化
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作者 刘丹丹 朱鸿飞 李德文 《中国粉体技术》 CAS CSCD 2023年第2期113-120,共8页
为了提高现有虚拟冲击技术下的呼吸性粉尘采样分离器的分离标准差,采用壁面射流中的附壁效应,结合模型角度改变对颗粒捕获效率的影响,在凸型内壁的分离腔基础上,研究加速喷嘴尾部的角度、外壁面顶点的角度和喷嘴至收集腔的距离3个方面... 为了提高现有虚拟冲击技术下的呼吸性粉尘采样分离器的分离标准差,采用壁面射流中的附壁效应,结合模型角度改变对颗粒捕获效率的影响,在凸型内壁的分离腔基础上,研究加速喷嘴尾部的角度、外壁面顶点的角度和喷嘴至收集腔的距离3个方面因素对于模型分离效率的影响。采用有限元软件ANSYS Fluent的气固两相流数值仿真,仿真模拟分离器的内部流场,在仿真过程中对颗粒进行捕捉跟踪,将计算出的分离效率与BMRC曲线的标准进行比较。结果表明:与凸型内壁结构的采样分离器模型相比,改进后的呼吸性粉尘采样分离器在粒径较小处的分离效率方程更贴近BMRC曲线,分离偏差均小于1.6%,分离标准差达到了δ_(2)=2.31%,在参考模型的分离标准差上提高了12.83%。 展开更多
关键词 虚拟冲击技术 壁面射流 气固两相流 数值模型曲线 呼吸性粉尘
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Investigation of the unstable flow phenomenon in a pump turbine 被引量:8
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作者 YIN JunLian WANG DeZhong +1 位作者 WALTERS D.Keith WEI XianZhu 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第6期1119-1127,共9页
Instability of pump turbine with S-shaped curve is characterized by large fluctuations of rotational speed during the transient processes.For investigating this phenomenon,a numerical model based on the dynamic slidin... Instability of pump turbine with S-shaped curve is characterized by large fluctuations of rotational speed during the transient processes.For investigating this phenomenon,a numerical model based on the dynamic sliding mesh method(DSSM)is presented and used to numerically solve the 3D transient flow which is characterized by the variable rotation speed of runner.The method is validated by comparison with measured data for a load rejection process in a prototype pump turbine.The results show that the calculated rotation speed agrees well with the experimental data.Based on the validated model,simulations were performed for the runaway process using an artificially assumed operating condition under which the unstable rotation speed is expected to appear.The results confirm that the instability of runner rotational speed can be effectively captured with the proposed method.Presented results include the time history profiles of unit flow rate and unit rotating speed.The internal flow characteristics in a typical unstable period are discussed in detail and the mechanism of the unstable hydraulic phenomenon is explained.Overall,the results suggest that the method presented here can be a viable alternative to predict the dynamic characteristics of pump turbines during transient processes. 展开更多
关键词 pump turbine transient process dynamic sliding mesh flow stability
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