Heat transfer through mould flux with titanium oxide additions
نویسندگان
چکیده
منابع مشابه
CuO/water Nanofluid Convective Heat Transfer Through Square Duct Under Uniform Heat Flux
Sometimes the need for non-circular ducts arises in many heat transfer applications because of lower pressure drop of non-circular cross section such as square duct compared to circular tube, particularly in compact heat. But square cross section has poor heat transfer performance and it is expected that using a nanofluid as a new heat transfer media may improve the heat transfer performance of...
متن کاملcuo/water nanofluid convective heat transfer through square duct under uniform heat flux
sometimes the need for non-circular ducts arises in many heat transfer applications because of lower pressure drop of non-circular cross section such as square duct compared to circular tube, particularly in compact heat. but square cross section has poor heat transfer performance and it is expected that using a nanofluid as a new heat transfer media may improve the heat transfer performance of...
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Phase change heat transfer is fundamentally important for thermal energy conversion and management, such as in electronics with power density over 1 kW/cm^2. The critical heat flux (CHF) of phase change heat transfer, either evaporation or boiling, is limited by vapor flux from the liquid-vapor interface, known as the upper limit of heat flux. This limit could in theory be greater than 1 kW/cm2...
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متن کامل
Nanofluid forced convection through a microtube with constant heat flux and slip boundary
Given the need to increase the efficiency of heat transfer in thermal systems, especially systems using nanofluids in microscale and nanoscale heat transfer equipment ideas to improve their performance is very good.In present study, the flow and heat transfer of Water-Cu nanofluid in micro-tube with slip regime with constant wall heat flux numerically simulated with low Reynolds numbers. Sl...
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ژورنال
عنوان ژورنال: Ironmaking & Steelmaking
سال: 2007
ISSN: 0301-9233,1743-2812
DOI: 10.1179/174328107x203912