a virtual wind chamber was proposed to accurately predict entrainment rate of the ejector at variable mainstream speed.
提出了一种虚拟风室模型,以精确计算引射器在各种主流速度下的引射空气量。
it was focused on the effects of the freeze temperature, freezing time, ice crystals form, the solution viscosity and separation process on the entrainment rate of ice crystals.
选择初始冷冻温度、把握冷冻时间、控制冰晶形态和采取合适的冰晶分离工艺,从而一定程度上降低冰晶的夹带率。
based on the 「first-order model」 of convective boundary layer(cbl), an improved parameterization for the entrainment rate of cbl was proposed.
利用室内水槽模拟大气对流边界层,并用多探头测量和光学方法测量分析夹卷层的夹卷过程和温度场结构。
correlations are proposed for calculating the entrainment rate and the pressure drop at the transition which allow for the presence of two liquid phases.
提出两液蒸馏的筛板流动工况转变点的雾沫夹带率及板压降的计算式。