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1)  axial solids mixing
颗粒轴向混合
2)  axial and lateral mixing of solids
轴径向颗粒混合
3)  lateral solids mixing
颗粒径向混合
4)  solids mixing
颗粒混合
1.
Solids mixing has been described byaproposed two dimensional plug flow dispersion model satisfactorily.
气固超短接触反应系统中颗粒轴向及径向混合行为研究魏飞,陈卫,金涌,俞芷青(清华大学化工系,北京100084)关键词:气固超短接触反应器,磷光示踪,颗粒混合1前言气-固并流下行循环流化床反应器是一种新型气固超短接触反应器 ̄[1],与传统。
2.
The dynamic processes of solids mixing were obtained from the CFD-DEM simulations for two cases at different fluidizing velocities.
应用离散颗粒模型直观获得颗粒运动情况,并从单个颗粒和气泡作用的角度分析颗粒运动和混合,证实气泡在床层中上升、在床层表面爆破以及气泡上升引起的乳化相下沉运动对颗粒混合起关键作用。
5)  particle mixing
颗粒混合
1.
Numerical simulations on particle mixing characteristics of spout-fluid bed were carried out in three dimensional based on discrete element method (DEM).
采用离散元方法,对喷动流化床内的颗粒混合特性进行了三维直接数值模拟。
2.
By combining the improved flashboard and digital image processing technique, the investigation on particle mixing behavior in a spout-fluid bed with a cross section 100 mm×30 mm and a height 500 mm was carried out.
将改进的插板/隔板技术与快速摄像图像处理技术相结合,对100mm×30mm×500mm喷动气固流化床内颗粒混合过程和混合行为进行了研究。
6)  mixed particle
混合颗粒
1.
The interaction between mixed particle medium and electromagnetic wave is analyzed,the mathematical model of particle medium is put forward and the physical interpretation of the dual-parameter method of microwave measurement of water content is provided.
本文分析了混合颗粒介质与电磁波的相互作用关系 ,提出了颗粒介质的数学模型并对微波测湿技术的双参数法给出了物理解释。
补充资料:单轴各向异性
      单轴各向异性是磁晶各向异性的最简单形式,即自发磁化的稳定方向(或易磁化方向)平行于一特殊晶轴。如六方晶系钴的自发磁化方向平行于 C轴(见晶体结构),这就表现出强的单轴各向异性。磁性材料的单轴各向异性值一般都低于其磁晶各向异性值,为103erg/cm3量级。磁性材料经磁场热处理或强的冷加工而产生的感生各向异性,都属于单轴各向异性。
  

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