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Numerical study of heat transfer by natural convection and surface thermal radiation in an open cavity receiver

机译:开孔接收器中自然对流和表面热辐射传热的数值研究

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In this work the numerical results of natural convection and surface thermal radiation in an open cavity receiver considering large temperature differences and variable fluid properties are presented. Numerical calculations were conducted for Rayleigh number (Ra) values in the range of 10~4-10~6. The temperature difference between the hot wall and the bulk fluid (AT) was varied between 100 and 400 K, and was represented as a dimensionless temperature difference (φ) for the purpose of generalization of the trends observed. Noticeable differences are observed between the streamlines and temperature fields obtained for φ= 1.333 (ΔT=400K) and φ = 0.333 (ΔT = 100 K). The total average Nusselt number in the cavity increased by 79.8% (Ra = 10~6) and 88.0% (Ra = 10~4) as φ was varied from 0.333 to 1.333. Furthermore the results indicate that for large temperature differences (0.667 ≤ φ ≤ 1.333) the radiative heat transfer is more important that convective heat transfer.
机译:在这项工作中,给出了考虑到大的温差和可变的流体特性的开腔接收器中自然对流和表面热辐射的数值结果。瑞利数(Ra)值在10〜4-10〜6范围内进行了数值计算。热壁和散装流体之间的温度差(AT)在100和400 K之间变化,并且为了概括观察到的趋势,将其表示为无因次温度差(φ)。对于φ= 1.333(ΔT= 400K)和φ= 0.333(ΔT= 100 K),在流线和温度场之间观察到明显的差异。随着φ从0.333到1.333的变化,腔中的总Nusselt数分别增加了79.8%(Ra = 10〜6)和88.0%(Ra = 10〜4)。此外,结果表明,对于较大的温差(0.667≤φ≤1.333),辐射传热比对流传热更为重要。

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