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MODELING THE INFLUENCE OF MARANGONI FLOWS ON THE LEIDENFROST STATE ON SOLID AND LIQUID SUBSTRATES

机译:模拟Marangoni流动对固态和液态基质上的LEIDDENFROST状态的影响

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Boiling heat transfer affects various processes related to energy, water and manufacturing. In the film boiling regime, heat transfer is substantially lower than in the nucleate boiling regime, due to the formation of a vapor layer at the solid-liquid interface (Leidenfrost effect). In this work, we present analytical modeling of the Leidenfrost state of droplets on solid and liquid substrates. A key aspect of this study is the focus on surface tension gradients on the surface of a liquid (Leidenfrost droplet or liquid substrate), which actuate thermo-capillary driven Marangoni flows. It is noted that this work develops a first-order simplified model, which assumes a uniform vapor layer thickness. The presence of Marangoni flows has non-trivial implications on the resulting thickness of the Leidenfrost vapor layer. Our analysis shows that the pumping effect generated in the vapor layer due to Marangoni flows can significantly reduce the Leidenfrost vapor layer thickness.
机译:沸腾的热传递会影响与能源,水和制造相关的各种过程。在膜沸腾状态中,由于在固液界面处形成了蒸汽层,因此热传递比在核沸腾状态中的传热要低得多(莱顿弗罗斯特效应)。在这项工作中,我们提出了固体和液体基质上的液滴的莱顿弗罗斯特状态的分析模型。这项研究的一个关键方面是关注液体(Leidenfrost液滴或液体基质)表面的表面张力梯度,该表面张力梯度驱动热毛细管驱动的Marangoni流。要注意的是,这项工作建立了一个一阶简化模型,该模型假定了均匀的蒸汽层厚度。马兰戈尼流的存在对莱顿弗罗斯特蒸汽层的最终厚度具有重要意义。我们的分析表明,由于Marangoni流动而在蒸气层中产生的泵吸作用可以显着减小Leidenfrost蒸气层的厚度。

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