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Heat transfer characteristics of warm water flow with cool immiscible droplets in a vertical pipe

机译:垂直管道中带有冷的不混溶液滴的热水流的传热特性

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We have conducted measurement for the temperature distribution of warm water flow with cool immiscible droplets of hydrofluoroether in a vertical transparent pipe with the laser-induced fluorescence method. The droplets descend in the upward laminar water flow due to the high specific weight of the liquid. The local temperature is evaluated from the local fluorescence intensity with the calibration curve. We have also conducted flow visualization with tracer particles for the water flow with the droplets. A particle tracking velocimetry method has been applied for the captured images with the scattered light from the particles. The defect of temperature distribution is found in the core of wake flow region of the descending droplets. The thermal wake region is smaller than the wake flow region with the Omega-shaped vortex tube. The Strouhal number for the droplet wobbling motion can be estimated from the empirical equation of rising bubbles. This Strouhal number is lower than the Strouhal number of vortex shedding from a solid sphere. (C) 2004 Elsevier Inc. All rights reserved.
机译:我们用激光诱导荧光法对垂直透明管中与氢氟醚的不溶混性微滴混合的热水流的温度分布进行了测量。由于液体的高比重,液滴在向上的层流中下降。根据局部荧光强度和校准曲线评估局部温度。我们还使用示踪剂颗粒进行了流动可视化,以观察带液滴的水流。粒子跟踪测速法已经应用于捕获的图像以及来自粒子的散射光。温度分布的缺陷在下降的液滴的尾流区域的核心中发现。热尾流区域比带有Omega形涡流管的尾流区域小。液滴摆动运动的斯特劳哈尔数可以从上升气泡的经验方程式估算。该斯特劳哈尔数低于从固体球体脱落的涡流的斯特劳哈尔数。 (C)2004 Elsevier Inc.保留所有权利。

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