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A Photographic Study of Flow Boiling Stability on a Plain Surface With Tapered Manifold

机译:锥形歧管平原表面流动沸腾稳定性的摄影研究

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Flow boiling in microchannels offers many advantages such as high heat transfer coefficient, higher surface area to volume ratio, low coolant inventory, uniform temperature control and compact design. The application of these flow boiling systems has been severely limited due to early critical heat flux (CHF) and flow instability. Recently, a number of studies have focused on variable flow cross-sectional area to augment the thermal performance of microchannels. In a previous work, the open microchannel with manifold (OMM) configuration was experimentally investigated to provide high heat transfer coefficient coupled with high CHF and low pressure drop. In the current work, high speed images of plain surface using tapered manifold are obtained to gain an insight into the nucleating bubble behavior. The mechanism of bubble nucleation, growth and departure are described through high speed images. Formation of dry spots for both tapered and uniform manifold geometry is also discussed.
机译:微通道的流动沸腾提供了许多优点,如高传热系数,高度的表面积越高,高冷却剂库存,均匀的温度控制和紧凑的设计。由于早期临界热通量(CHF)和流动不稳定,这些流沸腾系统的应用受到严重限制。最近,许多研究专注于可变流量横截面积,以增加微通道的热性能。在先前的工作中,通过实验研究了具有歧管(OMM)配置的开放微通道,以提供高传热系数,耦合高CHF和低压降。在当前的工作中,获得使用锥形歧管的普通表面的高速图像,以获得对成核气泡行为的洞察力。通过高速图像描述泡沫成核,生长和脱离的机制。还讨论了锥形和均匀歧管几何形状的干斑。

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