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Based on the hydrodynamic study explanation of mass and heat augmentation due to slug flow is drawn.
In essence, the proposed mechanism links several speculations regarding the various physical heat transfer mechanisms involved that give rise to the observed heat augmentation phenomena.
The measured effective thermal conductivity of the water saturated porous copper was as high as 32 W/m K that supported the superior heat augmentation characteristics of the copper water based sintered porous heat sink.
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Simple correlations for turbulent heating augmentation in terms of laminar momentum thickness Reynolds number, which can be employed as engineering level design and analysis tools, are also developed from numerical results.
The increase of D1 enlarges the scale and intensity of wake flow of pin-fin, resulting more violent actions of flow on heated walls, then, enhances the heat transfer augmentation.
Although Case A shows larger heat transfer augmentation, Case D is advantageous for augmenting side-wall heat transfer when the pressure loss is considered and the Reynolds number is comparatively large.
This experimental research was focused on the investigation of the heat transfer augmentation by various turbulator inserts in gas-heated channels.
In this section, the role of slip mechanisms on heat transfer augmentation is studied.
As higher the nanoparticles weight fraction, the more the rate of heat transfer augmentation.
Improvements in heat transfer augmentation depend on performance and manufacturing cost [3].
Different active and passive methods have been considered for the heat transfer augmentation.
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