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Analysis of multilayer convective flow of a hybrid nanofluid in porous medium sandwiched between the layers of nanofluid

机译:纳米流体层间夹层多孔介质中杂交纳米流体多层对流流动分析

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AgBr acts as a good sensitizer for titanium oxide, hence TiO_2-AgBr nanoparticles exhibit high photocatalytic activity which helps decompose methyl orange under visible light irradiation. Methyl orange is a chemical compound that is hard to degrade and has high stability. It is photoreactive and can capture photons from the sun and is highly used as a light harvester in solar cells, hence, it is used in solar applications. In view of this, the present article deals with the analysis of heat transfer in a multilayer flow of two immiscible nanofluids in a vertical channel that finds application in the fields of solar reactors, electronic cooling, and so on. The mathematical model involving the effect of thermal radiation and the presence of heat source is in the form of a system of ordinary differential equations. This system of equations is simplified using the differential transform method-Pade approximant and the resulting equations are solved algebraically. It is observed that the temperature of the coolant does not reach its saturation point faster due to the presence of different base fluids that differ in their thermal conductivity. This helps in maintaining the optimum temperature of the system.
机译:AGBR作为氧化钛的良好敏感剂,因此TiO_2-Agbr纳米颗粒表现出高光催化活性,有助于在可见光照射下分解甲基橙。甲基橙是一种难以降解并具有高稳定性的化合物。它是光度反应性的,可以捕获来自太阳的光子,并在太阳能电池中用作灯火坑,因此在太阳能应用中使用。鉴于此,本文涉及在垂直通道中的两个不混溶的纳米流体的多层流动中的传热分析,该垂直通道在太阳能电抗器,电子冷却等领域中的应用。涉及热辐射效果的数学模型和热源的存在是常微分方程系统的形式。使用差分变换方法 - 梯度近似值简化该方程系统,并将得到的方程求解。由于存在不同的基础流体的存在,因此观察到冷却剂的温度不会达到其饱和点,其导热率不同的不同基础流体。这有助于保持系统的最佳温度。

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