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首页> 外文期刊>European Physical Journal Plus >Thermal radiation effect on the flow field and heat transfer of Co3O4-diamond/EG hybrid nanofluid using experimental data: A numerical study
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Thermal radiation effect on the flow field and heat transfer of Co3O4-diamond/EG hybrid nanofluid using experimental data: A numerical study

机译:使用实验数据对Co3O4-金刚石/例如杂交纳米流体的流场和传热的热辐射效应:数值研究

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摘要

.In this study, the impact of thermal radiation on fluid flow and heat transfer within a square enclosure filled with ethylene glycol- Co3O4-diamond hybrid nanofluid on the basis of experimental data is investigated. The governing equations are being solved by employing the finite volume method and the SIMPLER algorithm. In investigating this problem, the Rayleigh number is taken from Ra=103 to Ra=105 and the volume fraction of nanoparticles in the range from 0.0 to 0.075 percent and the values from 0 to 2 are considered for the radiation parameter. It is observed from the results that in all the considered volume fractions, the average Nusselt number is increased by increasing the value of the radiation parameter. In all of the considered values for Ra and the volume fractions, the most relevant enhancement in the average Nusselt number corresponding to the enhancement of the radiation parameter is 200.25 percent which occurs in Ra=105 while the volume fraction is 0.075. In all volume fractions investigated, the maximum value of the stream function is increased by increasing the value of the radiation parameter. For all Rayleigh numbers in each of the investigated values of the radiation parameter, the maximum value of the stream function decreases by increasing the volume fraction of nanoparticles. The results of this study reveal that the effect of the thermal radiation in high Rayleigh numbers is not considerable.
机译:在本研究中,研究了在基于实验数据的基础上填充有乙二醇-CO3-金刚石杂交纳米流体的方形外壳内流体流动和热传递的热辐射的影响。通过采用有限体积方法和更简单的算法来解决控制方程。在研究这个问题时,瑞利数来自Ra = 103至Ra = 105,并且纳米颗粒的体积分数在0.0至0.075%的范围内,并且对于辐射参数考虑0至2的值。从所有考虑的体积分数中的结果观察到,通过增加辐射参数的值来增加平均纽带数。在RA和体积分数的所有视值中,与辐射参数的增强相对应的平均冲泡数的最相关的增强是200.25%,其在Ra = 105中发生,而体积分数为0.075。在研究的所有体积分数中,通过增加辐射参数的值来增加流功能的最大值。对于辐射参数的每个调查值中的所有Rayleigh数,通过增加纳米颗粒的体积分数来减少流功能的最大值。该研究的结果表明,热辐射在高瑞利数中的效果是不可取的。

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