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Effect of Radiation Heat Transfer on Naturally Driven Flow Through Parallel-Plate Vertical Channel

机译:辐射传热对平行板垂直通道自然驱动流的影响

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摘要

The present study deals with the effect of radiative heat transfer, which is often neglected, on the flow and heat transfer characteristics in naturally driven flow through vertical parallel plates. The effect of radiation on the naturally driven flow has been investigated by a newly developed numerical model which was validated by comparing numerical models with the experimental data from the literature. Realizable k-epsilon (RKE) model, Low-Re k-epsilon model and Low-Re Stress-Omega model are utilized to model the turbulence and compared with the experimental values for the case radiative-convective transport as well as purely convective transport. Initially, we have considered surface-to-surface radiation, assuming the fluid is radiatively non-participating. The case was extended to study the effect of having participating medium (like carbon dioxide and water vapor) on the temperature and velocity pattern inside the channel. Various cases from Rayleigh number ranging from 2.5 x 10(6) to 9.6 x 10(6) have been studied. It was found that radiation has a significant effect on the natural convection process even at lower operating temperatures. All the three turbulent models give satisfactory results; however, RKE was found to be the closest to the experimental data. Presence of participating medium has significant effect on the velocity pattern and temperature distribution inside the channel.
机译:本研究研究了通常被忽略的辐射传热对自然驱动流过垂直平行板的流动和传热特性的影响。已经通过新开发的数值模型研究了辐射对自然驱动流的影响,该数值模型通过将数值模型与文献中的实验数据进行比较而得到验证。利用可实现的k-ε(RKE)模型,Low-Rek-ε模型和Low-Re Stress-Omega模型对湍流进行建模,并与辐射对流输运和纯对流输运的实验值进行了比较。最初,我们假设流体是非参与性的,因此我们考虑了表面到表面的辐射。该案例扩展到研究具有参与介质(如二氧化碳和水蒸气)对通道内部温度和速度模式的影响。研究了瑞利数从2.5 x 10(6)到9.6 x 10(6)的各种情况。已经发现,即使在较低的工作温度下,辐射对自然对流过程也具有显着影响。这三个湍流模型都给出了令人满意的结果。但是,发现RKE最接近实验数据。参与介质的存在对通道内部的速度模式和温度分布有重要影响。

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