| 1. | Analysis on fully developed convective heat transfer of power law fluid flowing in tube 幂律流体管内充分发展的对流换热分析 |
| 2. | Power law fluid 幂律流体 |
| 3. | With increasing viscosity , the velocities of power law fluid and particle showed the same trend 随著稠度系数的增加,幂律流体和颗粒相的主流速度分布出现了与流动指数带来的影响相似的趋势。 |
| 4. | Normal stress distribution on the inner cylinder forced by power law fluid flowing in annulus with inner cylinder executing a planetary motion 幂律流体在内管做行星运动的环空中流动时的内管法向应力分布 |
| 5. | The characteristics of power law fluid governing equation was elaborated and the effect of viscosity and flow exponent on two - phase flow was studied 摘要阐述了幂律流体控制方程的特点,研究了幂律流体的稠度系数和流动指数的变化对两相流动的影响。 |
| 6. | With increasing flow exponent , the velocity of power law fluid near the pipe center decreased , and the velocity of particle near the pipe center increased but decreased near the pipe wall 随著流动指数的增加,幂律流体在圆管中心附近的主流速度减小,同时颗粒相速度在圆管中心附近增大,而在管壁附近减小。 |
| 7. | The character of pseudothermal temperature equation is expounded ; numerical computation of two phase flow of power law fluid in different kind of pump impeller blade and under the influence of its material parameters ( viscosity and flow exponent ) has been performed 摘要详细阐述了颗粒拟温度方程,计算了不同型线的叶轮及改变幂律流体物性参数对湍流流动的影响。 |
| 8. | It was found be compared the two - phase flow of power law fluid - solid with that of liquid - solid that the fluid velocity of power law fluid - solid was bigger than that of liquid - solid and the particle velocity distribution of power law fluid - solid was flatter than that of liquid - solid 对带颗粒的幂律流体的两相流流动与液固两相流流动做了比较,幂律流体两相流的流体速度在管道中心附近的大部分区域比液固两相流的流体速度流动的速度大,而颗粒相的速度分布比较平坦。 |
| 9. | According to the principle of mutual transformation between potential energy and kinetic energy , the vertically falling law of power law fluid by the action of unconstant static pressure and the relation between rheological parameter and time were studied , thus providing a theoretical basis for calculating the rheological parameters of fluid in funnel viscometer 根据位能与动能的变化关系,作者研究了在非恒定静压作用下幂律流体垂直下落的规律及流变参数与时间的关系,从而为计算漏斗粘度计中流体的流变参数提供了理论依据。 |