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热不平衡效应
相关语句
  thermal non-equilibrium effect
     For evaporating or condensing films, the boundary conditions at vapour-liquid interface are different to those for the isothermal films due to the thermal non-equilibrium effect at interface, and the film stabilities are influenced to some extent.
     处于蒸发或冷凝状态下的液膜,由于界面热不平衡效应的影响,导致其汽液界面条件与等温情形明显不同,这在一定程度上将影响液膜流动的稳定性。
短句来源
     The flow stability of stationary waves, a kind of surface wave on a thin-liquid film, is subject to the influence of thermal non-equilibrium effect at a vapor-liquid interface.
     驻波作为薄液膜表面波中的一种波 ,其流动稳定性受界面热不平衡效应的影响。
短句来源
     On the basis of boundary layer theory and thermal non-equilibrium effect derived is a spatial stability equation of the two-dimensional surface stationary waves universally applicable on evaporating, isothermal or condensing liquid films draining down along an inclined wall. From a theoretical viewpoint an in-depth analysis was conducted of the influence of thermal non-equilibrium effect, fluid physical properties, wall surface inclination angle and Reynolds number on the stability of stationary waves.
     基于边界层理论和界面热不平衡效应 ,推导出沿倾斜璧面下降的在蒸发、等温和冷凝状态下普遍适用的二维表面驻波空间稳定性方程 ,从理论上深入分析了热不平衡效应、流体物性、壁面倾角和雷诺数对驻波稳定性的影响。
短句来源
     The results of the study indicate that the influence of thermal non-equilibrium effect on the stability of the stationary waves is relatively significant only under small Reynolds numbers. At higher Reynolds numbers the stability is mainly dependent on inertial force and viscosity force.
     研究表明 :热不平衡效应对驻波稳定性的影响仅在小雷诺数下较为明显 ,在高雷诺数下 ,稳定性主要取决于惯性力和粘性力 ;
短句来源
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For evaporating or condensing films, the boundary conditions at vapour-liquid interface are different to those for the isothermal films due to the thermal non-equilibrium effect at interface, and the film stabilities are influenced to some extent. The universal temporal and spatial stabilities formulations of the two-dimensional surface waves on evaporating or isothermal or condensing liquid films draining down an inclined wall are established in present paper with the collocation method based on the...

For evaporating or condensing films, the boundary conditions at vapour-liquid interface are different to those for the isothermal films due to the thermal non-equilibrium effect at interface, and the film stabilities are influenced to some extent. The universal temporal and spatial stabilities formulations of the two-dimensional surface waves on evaporating or isothermal or condensing liquid films draining down an inclined wall are established in present paper with the collocation method based on the boundary layer theory and complete boundary conditions. The models include the effects of Reynolds number, thermocapillarity, inclination angle, liquid property, evaporation, isothermal or condensation. The effects of listed above factors are investigated with the neutral stability curves at different Reynolds numbers, and stabilities characteristics are fully indicated in theory for evaporating or condensing films.

处于蒸发或冷凝状态下的液膜,由于界面热不平衡效应的影响,导致其汽液界面条件与等温情形明显不同,这在一定程度上将影响液膜流动的稳定性。该文以边界层理论为基础,考虑完整的边界条件,推导沿倾斜壁面下降的、处于蒸发、等温和冷凝状态下普遍适用的二维表面波通用时空稳定性方程。方程中包含了雷诺数、热毛细力、倾角、流体物性以及蒸发、等温和冷凝条件的影响。通过中性稳定性特征曲线进一步分析了上述因素在不同雷诺数下的作用,从理论上揭示了液膜表面波流动的稳定性特征。

The flow stability of stationary waves, a kind of surface wave on a thin-liquid film, is subject to the influence of thermal non-equilibrium effect at a vapor-liquid interface. On the basis of boundary layer theory and thermal non-equilibrium effect derived is a spatial stability equation of the two-dimensional surface stationary waves universally applicable on evaporating, isothermal or condensing liquid films draining down along an inclined wall. From a theoretical viewpoint an in-depth analysis was conducted...

The flow stability of stationary waves, a kind of surface wave on a thin-liquid film, is subject to the influence of thermal non-equilibrium effect at a vapor-liquid interface. On the basis of boundary layer theory and thermal non-equilibrium effect derived is a spatial stability equation of the two-dimensional surface stationary waves universally applicable on evaporating, isothermal or condensing liquid films draining down along an inclined wall. From a theoretical viewpoint an in-depth analysis was conducted of the influence of thermal non-equilibrium effect, fluid physical properties, wall surface inclination angle and Reynolds number on the stability of stationary waves. The results of the study indicate that the influence of thermal non-equilibrium effect on the stability of the stationary waves is relatively significant only under small Reynolds numbers. At higher Reynolds numbers the stability is mainly dependent on inertial force and viscosity force. In the whole range of Reynolds number, fluid physical properties and wall surface inclination angle all play a very conspicuous role.

驻波作为薄液膜表面波中的一种波 ,其流动稳定性受界面热不平衡效应的影响。基于边界层理论和界面热不平衡效应 ,推导出沿倾斜璧面下降的在蒸发、等温和冷凝状态下普遍适用的二维表面驻波空间稳定性方程 ,从理论上深入分析了热不平衡效应、流体物性、壁面倾角和雷诺数对驻波稳定性的影响。研究表明 :热不平衡效应对驻波稳定性的影响仅在小雷诺数下较为明显 ,在高雷诺数下 ,稳定性主要取决于惯性力和粘性力 ;流体物性和壁面倾角在整个雷诺数范围内均起着非常明显的作用

 
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