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首页> 外文期刊>International Journal of Heat and Mass Transfer >X-ray imaging analysis on behaviors of boiling bubbles in nanofluids
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X-ray imaging analysis on behaviors of boiling bubbles in nanofluids

机译:纳米流体中沸腾行为的X射线成像分析

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Nanofluid, a liquid suspension containing nanoparticles, has been widely used to enhance heat transfer, However, the heat transfer enhancement mechanism of nanofluids has not been clearly revealed yet. Therefore, understanding the boiling heat transfer of nanofluids is a challenging research issue in the field of heat transfer. When nanoparticles are added into a base fluid, the thermo-physical properties of the fluid and surface characteristics are modified. Those modifications induce changes in the behavior of boiling bubbles. In addition to the size and number of bubbles, the generating rate of boiling bubbles was newly defined to estimate the heat transfer coefficient directly from bubble behaviors according to nanofluid concentration. As the nanofluid concentration increases, both the generating rate of boiling bubbles and the heat transfer coefficient decrease. Wettability and hydrodynamic size were also employed to reason those degradations. Wettability increase leads to the reduction of activated nucleation sites, which reduces the bubble generating rate and heat transfer coefficient with an increase in nanofluid concentration. In this study, the feasibility and usefulness of synchrotron X-ray imaging and a newly defined boiling generating rate for examining boiling heat transfer were verified by observing boiling-bubble behaviors. Moreover, it was also shown that wettability plays an important role in changes of the bubble behaviors and the heat transfer coefficient as surface roughness modification. (C) 2018 Elsevier Ltd. All rights reserved.
机译:纳米流体,一种包含纳米颗粒的液体悬浮液,已被广泛用于增强传热,但是,纳米流体的传热增强机理尚未明确揭示。因此,了解纳米流体的沸腾传热是传热领域中一个具有挑战性的研究问题。当将纳米颗粒添加到基础流体中时,流体的热物理性质和表面特性会发生变化。这些修饰引起沸腾气泡行为的变化。除了气泡的大小和数量外,还重新定义了沸腾气泡的产生速率,以根据纳米流体的浓度直接根据气泡的行为估算传热系数。随着纳米流体浓度的增加,沸腾气泡的产生速率和传热系数均降低。还使用可湿性和流体力学尺寸来推断这些降解。润湿性的增加导致活化成核位点的减少,这随着纳米流体浓度的增加而降低了气泡的产生速率和传热系数。在这项研究中,通过观察沸腾气泡行为,验证了同步加速器X射线成像的可行性和实用性以及用于检查沸腾传热的新定义的沸腾产生速率。此外,还显示出润湿性在作为表面粗糙度改性的气泡行为和传热系数的改变中起重要作用。 (C)2018 Elsevier Ltd.保留所有权利。

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