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换热临界热流
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  critical heat fluxes
     The hydrodynamic instability model is spread for finite geometries in order to explain effects of size of microelectronic devices on the mechanism of formation of pool boiling critical heat fluxes.
     动力学不稳定性模型被推广到有限几何形状的加热面,以解释微电子器件尺寸对池内沸腾换热临界热流形成机理的影响。
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  相似匹配句对
     An Investigation to Air Jet Heat Transfer
     喷流的研究
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     Research on Thermal Performance of Micro Channels
     微通道研究
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     (M, H)-Critical Matrices
     (M,H)-临界矩阵
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     TERRESTRIAL HEAT FLOW IN JIANGXI PROVINCE
     江西大地热流
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     THE GAUSS -CRITICAL SUBMANIFOLDS
     高斯临界子流形
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  critical heat fluxes
A physical model for prediction of critical heat fluxes in boiling in swirling subcooled flow under nonuniform heating
      
For arbitrary subcooling, an interpolation equation is constructed, in which the relations for critical heat fluxes (CHFs) under boiling of saturated and highly subcooled liquids serve as asymptotics.
      
An experimental apparatus is briefly described, together with the results of a study of the critical heat fluxes for a steam-water mixture in the dryness range above 0.5 at pressures to 106 N/m2.
      
Critical heat fluxes in the pool boiling of liquids at reduced pressure
      
The authors report the results of a study of the critical heat fluxes and boiling mechanism of certain liquids at reduced pressures.
      
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The hydrodynamic instability model is spread for finite geometries in order to explain effects of size of microelectronic devices on the mechanism of formation of pool boiling critical heat fluxes.Different mechanismes would appear as characteristic size of heater decreases.Nondimensionnalized critical heat fluxes can be correlated as a funtion of the nondimensionalized characteristic size.

动力学不稳定性模型被推广到有限几何形状的加热面,以解释微电子器件尺寸对池内沸腾换热临界热流形成机理的影响。随特性尺寸的减小,将出现不同的机理。对于不同几何形状的加热器件,其无因次临界热流与尺寸的关系均可以用相似的函数形式进行关联。

The nucleate boiling heat transfer characteristics of a bar water jet impingement on a large flat superhydrophilic surface were experimentally investigated.The superhydrophilic heat transfer surface was formed by a TiO2 coating process.The experimental results were compared with those from the common metal surface.In especial,the quantificational effects of the flow conditions,heating conditions and the coating methods on the critical heat flux(CHF) were systemically investigated.The experimental data showed...

The nucleate boiling heat transfer characteristics of a bar water jet impingement on a large flat superhydrophilic surface were experimentally investigated.The superhydrophilic heat transfer surface was formed by a TiO2 coating process.The experimental results were compared with those from the common metal surface.In especial,the quantificational effects of the flow conditions,heating conditions and the coating methods on the critical heat flux(CHF) were systemically investigated.The experimental data showed that the nucleate boiling heat transfer from the superhydrophilic surface was significantly different from those from the common metal surface.The critical heat flux of boiling on the superhydrophilic surface was greatly increased by the decreasing of the solid-liquid contact angle.

研究了在纳米材料涂层形成的超亲水材料传热表面上水喷流冷却时的沸腾换热特性,并与普通金属面上的喷流沸腾特性进行了比较。介绍了流动条件、加热方式、加热条件、超亲水材料涂层等条件对高温沸腾换热、临界热流密度的定量影响和一些基本换热规律。实验发现,超亲水传热表面对沸腾换热特性有十分显著的影响,超亲水传热面强化了喷流沸腾临界热流密度。

 
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