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- W2012143872 abstract "Abstract To study the cooling of surfaces exposed to high temperature stress and heat flux, the blowing, or transpiration, technique is numerically investigated in the case of a porous circular cylinder. Two models are developed to simulate the blowing impact on the outer flow and an experimental set-up available allows for direct comparison and validation of the numerical simulations. The heat exchange occuring within the porous wall itself between the coolant and the solid part of the wall is accounted. The results show an excellent effectiveness of the blowing in terms of surface temperature reduction, even for low blowing ratii. The incident heat flux exhibits a maximum for medium blowing rates due to a decreasing heat transfer coefficient and a growing temperature difference between the surface and the main flow with the injection rate. Finally, the blowing is demonstrated to be very effective in cooling heavily thermally stressed parts in terms of homogeneity and coolant rate required." @default.
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- W2012143872 date "2001-11-01" @default.
- W2012143872 modified "2023-10-16" @default.
- W2012143872 title "Blowing models for cooling surfaces" @default.
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- W2012143872 doi "https://doi.org/10.1016/s1290-0729(01)01283-2" @default.
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