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Enhancement of heat transfer from hot water by co-flowing it with mercury in a mini-channel

机译:通过在微型通道中与汞共流来增强热水的热传递

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The present study is a numerical investigation on the flow and heat transfer in a mini-channel where both hot liquid water and mercury co-flow together in a direct contact manner. Results show that the presence of a high thermal conductivity liquid metal such as mercury enables the hot water to lose much more of its initial thermal energy content, than when only water alone flows in the channel. However, too unjustified excessive mercury co-flowing with the hot water can lead to adverse effects in regards to the heat loss from the hot water. The reason behind the enhanced heat transfer between the two liquids is due to the initiation of high temperature gradients sites inside the channel, especially in the region of the interface between the two liquids, in addition to the high thermal conductivity of mercury, as compared to water thermal conductivity. These two effects lead to effective conduction cooling in the transverse direction over the whole length of the channel. These aspects are quantified in this study.
机译:本研究是对微型通道中流动和传热的数值研究,其中液态热水和汞以直接接触的方式共同流动。结果表明,与仅在通道中流动的水相比,高导热率的液态金属(如汞)的存在可使热水损失更多的初始热能含量。但是,过多不合理的汞与热水共同流过会导致从热水中散发热量的不利影响。与汞相比,除了汞的高导热性之外,两种液体之间的传热增强的原因还在于,通道内部,尤其是两种液体之间的界面区域中的高温梯度位点的开始。水的导热系数。这两个作用导致在通道的整个长度上沿横向方向进行有效的传导冷却。这些方面在这项研究中进行了量化。

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