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1)  interphase heat transfer
相际传热
2)  interphase mass transfer
相际传质
1.
The calculated results are in good agreement with experimental values, and this shows that the proposed model can be used to describe satisfactorily the processes of multicomponent interphase mass transfer.
考虑气液界面附近的湍流特性,建立了多组分气液相际传质的数学模型。
2.
Based on the principle of pressure gradient diffusion,the mechanism of the influence of surface tension on interphase mass transfer was brought forward,and a mathematical description of the influence was presented exploringly.
从压力扩散出发 ,提出了表面张力对相际传质的影响机理 ,并且探索性地给出了表面张力对相际传质影响的数学描述。
3)  phase change heat transfer
相变传热
1.
Molecular dynamics simulation and study on some related topics of phase change heat transfer;
相变传热相关问题的分子动力学模拟及研究
2.
A numerical model of freezing-thawing phase change heat transfer process in biological tissue and tumor was established in this paper.
本文建立了肿瘤组织多孔介质冻融相变传热的数学模型。
3.
The researches of phase change heat transfer are reviewed in this paper from the following four aspects.
总结了相变传热的特点及求解方法 ;相变墙板的研制以及使用效果方面的研究现状 ;相变在供暖、空调系统中的应用 ;相变贮能技术在HVAC中应用的诸多优势。
4)  vapor-phase heat transfer
气相传热
1.
In order to overcome the difficult problem,of accurately calculating convective heat transfer along liquid-vapor interfaces,in theoretical analysis work,a heat transfer model,based on the vapor-phase heat transfer model,has been formulated for saturated evaporating liquid laminar flow films acted upon by co-current or counter-current interfacial shear.
为克服理论分析中气液界面对流换热难以计算的问题,基于气相传热模型,建立了在同向或反向切应力作用下层流饱和蒸发液膜的传热模型,推导出无量纲液膜厚度和壁面对流换热系数与流动长度、界面切应力和初始雷诺数间的理论关系式。
5)  phase-change heat transfer
相变传热
1.
The axisymmetric dual reciprocity boundary element method is extended to numerically simulate the axisymmetric flow and phase-change heat transfer process in porous medium.
本文将轴对称双倒易边界元方法拓展应用于数值模拟多孔介质内轴对称的流动与相变传热过程,得到了其内非稳态温度场、压力场和速度场,及相变界面时间推进图象。
2.
In order to simulate the eroding state of hearth exactly,an unsteady mathematical model including phase-change heat transfer was developed and the different treatment methods of latent heat were compared.
建立了考虑相变传热的非稳态炉缸炉底传热模型,并对不同的凝固潜热处理方法进行了比较。
3.
This paper deals with the phase-change heat transfer in a minichannel.
针对微槽流动相变传热,在给出气泡平衡半径及初值条件的前提下,提出了气泡在微槽中演化半径的系综公式,结合气泡生长随机变量的相关性得出了气泡在微槽中生长所满足的随机微分动力方程,由方程的定态解进一步得出了微槽中气泡生长系统的势能及概率密度函数随半径的演化规律。
6)  multiphase heat transfer
多相传热
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