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大长径比直筒型旋风分离器内部流动特性研究 被引量:7
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作者 高助威 王娟 +2 位作者 王江云 马卓越 毛羽 《高校化学工程学报》 EI CAS CSCD 北大核心 2018年第6期1288-1298,共11页
为了探究大长径比直筒型旋风分离器内部的流动特性,采用雷诺应力模型(RSM)对单入口蜗壳式旋风分离器进行数值模拟,从瞬态流场和动态特性两个方面分析不同轴向位置的切向速度分布。同时,运用RMS分析了湍流脉动速度偏离时均速度的程度。... 为了探究大长径比直筒型旋风分离器内部的流动特性,采用雷诺应力模型(RSM)对单入口蜗壳式旋风分离器进行数值模拟,从瞬态流场和动态特性两个方面分析不同轴向位置的切向速度分布。同时,运用RMS分析了湍流脉动速度偏离时均速度的程度。结果表明,在瞬态流场中,切向速度等值线在截面上分布不对称,呈现明显的非轴对称现象;主要表现为切向速度零值的所在位置与几何中心不重合,零值偏移的一侧,切向速度较大,偏离的一侧较小。此外,切向速度的动态变化属于高速脉动状态,具有准周期性特点,通过优化结构或操作条件可以改变涡核频率,降低工业震动。在分离空间上部区域,流动不稳定性较大,湍流脉动较强,速度波动范围较大。随着轴向向下,流体能量逐渐耗散,速度脉动逐渐减小。RMS数据表明运动流体从入口段进入旋风分离器,流动不稳定性逐渐增大,达到一定程度后,不稳定性逐渐变小,直至较为平稳。 展开更多
关键词 直筒型风分离器 大长径比 数值模拟 动态特性 旋流不稳定性
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旋风分离器内涡核摆动的特性研究 被引量:19
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作者 高助威 王娟 +2 位作者 王江云 毛羽 魏耀东 《工程热物理学报》 EI CAS CSCD 北大核心 2017年第12期2610-2618,共9页
涡核摆动是旋风分离器流体运动的一种非稳定现象,会对流场造成扰动,导致颗粒返混进而影响分离效率.为了探究涡核摆动的规律和机理,本文对单入口蜗壳式旋风分离器内的流场进行研究,运用PDPA测量流场的基本数据,采用Reynolds应力输运模型... 涡核摆动是旋风分离器流体运动的一种非稳定现象,会对流场造成扰动,导致颗粒返混进而影响分离效率.为了探究涡核摆动的规律和机理,本文对单入口蜗壳式旋风分离器内的流场进行研究,运用PDPA测量流场的基本数据,采用Reynolds应力输运模型对其流动进行数值模拟,并定义旋流不稳定性指数TⅡ来分析流动的不稳定性.结果表明,截面Z/D=0.71上瞬时切向速度波动经Fourier变换后,存在一个集中分布的频率,此频率由涡核摆动导致,而且数值模拟结果与实验测量数据吻合较好。通过对涡核中心的运动轨迹分析,发现在整个旋风分离器空间内部都存在涡核摆动现象;在同一时刻,各个截面的涡核中心偏离几何中心的情况并不相同,涡核区域也不一致;各个截面的涡核中心的连线并不在一个平面或者直线上,而是摆动的。此外,分析TⅡ曲线发现气流从不对称的入口结构进入旋风分离器内部,涡核中心开始偏离几何中心,不稳定性逐渐扩大;随着旋流运动向下,入口结构不对称对旋流的影响变小,不稳定性又逐渐减小;流动最终在Z/D=8之后趋于稳定. 展开更多
关键词 PDPA 数值模拟 FOURIER变换 涡核中心 旋流不稳定性指数
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Unstable Head-Flow Characteristic Generation Mechanism of a Low Specific Speed Mixed Flow Pump 被引量:54
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作者 Masahiro MIYABE Hideaki MAEDA +1 位作者 Isamu UMEKI Yoshinori JITTANI 《Journal of Thermal Science》 SCIE EI CAS CSCD 2006年第2期115-120,144,共7页
This paper treats the flow instabilities in a mixed flow pump with a vaned diffuser. Test pump has a positive slope of a head-flow performance curve at 65% flow rate of BEP (Best Efficiency Point) because of a rotatin... This paper treats the flow instabilities in a mixed flow pump with a vaned diffuser. Test pump has a positive slope of a head-flow performance curve at 65% flow rate of BEP (Best Efficiency Point) because of a rotating stall. Dynamic Particle Image Velocimetry (PIV) and pressure fluctuation measurements are used for investigating the propagation mechanism of a rotating stall. It was found that unstable performance was caused by periodical large scale abrupt backflow generated from the vaned diffuser to the outlet of impeller. Further, the relation between the static pressure at the inlet of diffuser vane and the internal flow condition was clarified. From these experimental results, in order to improve the positive slope of a head-flow performance curve, to suppress the growth of strong vortex toward the inlet of diffuser vane was proved to be a key point. 展开更多
关键词 mixed flow pump vaned diffuser flow instabilities rotating stall dynamic PIV
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Prediction of the Resonance Characteristics of Combustion Chambers on the Basis of Large-Eddy Simulation 被引量:1
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作者 Franco MAGAGNATO Balázs PRITZ +1 位作者 Horst BCHNER Martin GABI 《Journal of Thermal Science》 SCIE EI CAS CSCD 2005年第2期156-161,共6页
In the last few years intensive experimental investigations were performed at the University of Karlsruhe to develop an analytical model for the Helmholtz resonator-type combustion system. In the present work the reso... In the last few years intensive experimental investigations were performed at the University of Karlsruhe to develop an analytical model for the Helmholtz resonator-type combustion system. In the present work the resonance characteristics of a Helmholtz resonator-type combustion chamber were investigated using large-eddy simulations (LES), to understand better the flow effects in the chamber and to localize the dissipation. In this paper the results of the LES are presented, which show good agreement with the experiments. The comparison of the LES study with the experiments sheds light on the significant role of the wall roughness in the exhaust gas pipe. 展开更多
关键词 compressible large-eddy simulation combustion instabilities oscillating flow damping ratio.
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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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