首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference;AJK2011 >VISUALIZATION STUDY ON GAS BUBBLE BREAK-UP AND TRANSPORT PHENOMENA IN MICROCHANNELS
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VISUALIZATION STUDY ON GAS BUBBLE BREAK-UP AND TRANSPORT PHENOMENA IN MICROCHANNELS

机译:微通道中气体气泡破裂和传输现象的可视化研究

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In the present research, a visualization study is carried out to understand the flow patterns and break-up formation in flow-focusing microfludic device, which usually involve gas-liquid two-phase flow patterns such as bubbly flow, slug flow, and annular flow. High-speed camera and fluorescence microscopy are used to the characterize microscale gas-liquid two-phase flows in 191.64 urn x 200 urn rectangular PDMS microchannel which are fabricated by using soft lithography technique. N_2 and Silicone oil serve as the gas and liquid phases, respectively. The influence of gas and liquid flow rates and the viscosity of the liquid phase on the bubble size, flow patterns, and generating frequency are experimental studied. This study is focused on viscosity of liquid phase. In order to influence of viscosity of liquid phase, various viscosity silicone oils are used in this study. The breakup mechanism, bubble generating rate, and gas bubble making time are investigated at the cross junction. The gas bubble size and space of between bubbles are dependent on the flow rates of the liquid and gas, and viscosity of liquids. The slug length L is also dependent on the flow rates of the liquid and gas in such a manner that the ratio of slug length to the channel width is a function of the flow rate ratio of gas to liquid.
机译:在本研究中,进行了可视化研究,以了解流动聚焦微流装置中的流型和破裂形成,这些流型和流型微流装置通常涉及气液两相流型,例如气泡流,团状流和环形流。 。高速相机和荧光显微镜用于表征191.64 urn x 200 urn矩形PDMS微通道中的微尺度气液两相流,该微通道是通过软光刻技术制造的。 N_2和硅油分别用作气相和液相。实验研究了气体和液体的流速以及液相的粘度对气泡大小,流动方式和产生频率的影响。这项研究的重点是液相的粘度。为了影响液相的粘度,本研究中使用了各种粘度的硅油。研究了交叉结处的破裂机理,气泡产生速率和气泡产生时间。气泡的大小和气泡之间的间隔取决于液体和气体的流速以及液体的粘度。团块长度L还以这样的方式取决于液体和气体的流速,即,团块长度与通道宽度的比率是气体与液体的流速比率的函数。

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