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Heat transfer coefficient of nucleate boiling in low concentration level of single and hybrid Al2O3-SiO2 water-based nanofluids

机译:单和杂交Al2O3-SiO2水基纳米流体低浓度水平的核沸腾传热系数

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Experiments were conducted to identify the Heat Transfer Coefficient(HTC)in saturated poo! boiling of single and hybrid water-based nanofluids.In these experiments,Al2O3 and SiO2 nanoparticles were selected and diluted into two separate single nanofluids,and they were mixed in a different ratio from 0:100,25:75,50:50,75:25 and 100:0 percent to achieve a final total concentration of 0.001 vol.%.Successively,the mixtures were used to obtain the HTC values through experimental works.In the present work,it was found that in the lowest concentration(0.00025 vol.%)of Al2O3 nanofluid,the HTC enhanced considerably but deteriorated for SiO2 nanofluid.Separately,as for the hybrid nanofluids,the HTCs were dramatically enhanced at the initial stage but slowly deteriorated once the time variation increased,especially in a higher ratio of SiO2 nanofluid.The deposition of the nanoparticles onto the surface heater suggested being the main factor,where in the present case,the significant coexisting effect of the deposited hybrid nanopaiticles(Al2O3 and SiO2)on the heated surface to the changes of ΔTw due to different nanoparticles properties.
机译:进行实验以确定传热系数(HTC)在饱和的便便!的单一和混合水基nanofluids.In这些实验沸腾,选择Al2O3和SiO2纳米颗粒和稀释成两个单独的单一纳米流体,并且它们以不同的比例混合从0:100,25:75,50:50,75 :25和100:0%至达到0.001%(体积)的最终总浓度接着,将混合物用于通过实验works.In获得HTC值目前的工作中,发现的是,在最低浓度(0.00025体积。%)氧化铝纳米流体,所述HTC显着提高,但对恶化的SiO2 nanofluid.Separately,作为用于混合纳米流体,所述的HTCs受到显着在初始阶段提高,但慢慢地劣化一次的时间变化上升,尤其是在SiO 2的比例较高所述纳米颗粒的nanofluid.The沉积到表面上的加热器被建议的主要因素,其中在当前情况下,被加热的表面到昌上沉积的混合nanopaiticles(Al2O3和SiO2)的显著共存效果ΔTW的ES由于不同的纳米颗粒的性质。

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