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1)  axial mixing
轴向混和
2)  axial mixing
轴向混合
1.
The influence of structural parameters of corrugated plate packing on performance of axial mixing in liquid phase was investigated in 300mm ID packing tower with air-H2O-KCl system.
在内径300mm的填料塔中,以空气-水-氯化钾为物系,研究了孔板波纹填料的结构参数对液相轴向混合特性的影响。
2.
The axial mixing of the continuous phase and hold-up of the dispersed phase in a reciprocating sieve plate extraction column with baffles of 90 mm inside diameter and 1980 mm effective column height have been investigated in this paper.
本文对塔径90mm,塔高1980mm,有挡板的振动筛板萃取塔中连续相轴向混合和分散相塔藏量进行了实验研究。
3)  axial dispersion
轴向返混
1.
The experimental results show that the axial dispersion in the column packed with 250Y or 350Y structured packings is the least while.
通过比较发现,在所用填料中,装有250Y或350Y型填料的浮选柱不仅轴向返混最小,而且径向返混最大,最有利于提高回收率。
2.
The model parameters had been measured with stimulate_response method and axial dispersion coefficients were estimated with transfer function and Fourier analysis method.
结果表明 ,不同柱高、柱径和流速下由两种方法计算得到的轴向返混系数数值相当 ,这也验证了此二法的准确性 。
3.
The axial dispersion coefficients and total mass transfer coefficients of xylose and sorbinose have been determined by stimulate response,technique with intert substance being traced.
用惰性物质为示踪剂,采用扰动-应答技术测定了固定床的轴向返混系数与传质系数。
4)  axial backmixing
轴向混合
1.
Experiments and studies on axial backmixing were carried out in a gas agitated extractor with air-water-kerosene three phase system, the extract tower抯 internal diameter was 50 mm.
在内径为50mm的气体搅拌萃取塔中,研究了空气-水-煤油系统的轴向混合特征。
2.
Experiments and studies were carried out on axial backmixing in a gas agitated extractor with air-water-kerosene system static mixer being installed in, in which water was continuous phase, kerosene was dispersed phase and air was used as agitation.
在内径为 5 0mm的气体搅拌萃取塔中 ,研究了空气—水—煤油系统的轴向混合特征 ,分别测定了连续相和分散相的轴向扩散系数 ,利用轴向扩散模型求出了传质系数 ,并与活塞流模型进行了比较 ,得到了轴向扩散模型传质系数的经验关联
5)  axis direction and radius direction
轴向和径向
6)  longtitudinal mixing
纵向混和
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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