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重力注水过程流动不稳定现象关键影响因素研究
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作者 杜政瑀 佟立丽 +2 位作者 曹学武 王小吉 侯丽强 《原子能科学技术》 EI CAS CSCD 北大核心 2019年第1期132-139,共8页
重力驱动注水过程中由于流量较小以及蒸汽的积聚可能导致流动不稳定现象的发生,对核反应堆安全运行具有重要的影响。通过实验研究的方法,搭建了重力注水模拟实验装置,研究了不同蒸汽出口形阻、高位储水箱水位和加热棒初始温度下流动不... 重力驱动注水过程中由于流量较小以及蒸汽的积聚可能导致流动不稳定现象的发生,对核反应堆安全运行具有重要的影响。通过实验研究的方法,搭建了重力注水模拟实验装置,研究了不同蒸汽出口形阻、高位储水箱水位和加热棒初始温度下流动不稳定现象的变化规律。结果表明,重力驱动注水过程流动不稳定现象包含冷却水初次注入阶段、注入水逐出阶段和冷却水再注入阶段等。在一定冷却水初始温度、冷却水入口形阻以及系统压力下,蒸汽排出速度以及实验本体内筒顶部的聚集情况取决于蒸汽出口形阻,减小蒸汽出口形阻可加快蒸汽排放速度,压力峰峰值降低、振荡周期变长,有利于系统稳定;提高高位储水箱水位加快了冷却水注入速率,增加了加热棒被淹没率,降低了流动不稳定现象的发生次数和持续时间;随加热棒初始温度的升高,冷却水流量出现了波动向停滞的转变,流动不稳定现象发生的次数增加且持续时间加长。 展开更多
关键词 重力注水 流动不稳定现象 注入水逐出 压力峰
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微量PPA对m-LLDPE高速挤出流变性能的影响 被引量:1
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作者 刘祥贵 赵贝 +1 位作者 孙显茹 吴其晔 《现代塑料加工应用》 CAS 北大核心 2010年第5期4-7,共4页
采用恒速型双毛细管流变仪研究了含氟弹性体(PPA)对茂金属催化线性低密度聚乙烯(m-LLDPE)熔体高速挤出不稳定行为的影响。结果表明,微量PPA的加入能推迟甚至抑制鲨鱼皮畸变,能明显改善粘-滑畸变。加入微量PPA后,挤出压力下降,管壁上应... 采用恒速型双毛细管流变仪研究了含氟弹性体(PPA)对茂金属催化线性低密度聚乙烯(m-LLDPE)熔体高速挤出不稳定行为的影响。结果表明,微量PPA的加入能推迟甚至抑制鲨鱼皮畸变,能明显改善粘-滑畸变。加入微量PPA后,挤出压力下降,管壁上应力集中效应减弱,挤出压力振荡现象减弱甚至消失,流动曲线由断裂逐渐变得连续。 展开更多
关键词 含氟弹性体 茂金属催化线性低密度聚乙烯 高速挤出 不稳定流动现象
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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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