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Microdroplet formation of water and nanofluids in heat-induced microfluidic T-junction

机译:热诱导的微流T形结中水和纳米流体的微滴形成

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摘要

This paper reports experimental investigations on the droplet formation and size manipulation of deionized water (DIW) and nanofluids in a microfluidic T-junction at different temperatures. Investigations of the effect of microchannel depths on the droplet formation process showed that the smaller the depth of the channel the larger the increase of droplet size with temperature. Sample nanofluids were prepared by dispersing 0.1 volume percentage of titanium dioxide (TiO2) nanoparticles of 15 nm and 10 nm נ40 nm in DIW for their droplet formation experiments. The heater temperature also affects the droplet formation process. Present results demonstrate that nanofluids exhibit different characteristics in droplet formation with the temperature. Addition of spherical-shaped TiO2 (15 nm) nanoparticles in DIW results in much smaller droplet size compared to the cylindrical-shaped TiO2 (10 nm נ40 nm) nanoparticles. Besides changing the interfacial properties of based fluid, nanoparticles can influence the droplet formation of nanofluids by introducing interfacial slip at the interface. Other than nanofluid with cylindrical-shaped nanoparticles, the droplet size was found to increase with increasing temperature.
机译:本文报道了在不同温度下微流体T型结中去离子水(DIW)和纳米流体的液滴形成和尺寸控制的实验研究。对微通道深度对液滴形成过程影响的研究表明,通道深度越小,液滴尺寸随温度的增加就越大。通过将0.1体积百分比的15 nm和10 nm×40 nm的二氧化钛(TiO2)纳米颗粒分散在DIW中制备纳米流体样品,以进行液滴形成实验。加热器温度也会影响液滴的形成过程。目前的结果表明,纳米流体在随温度变化的液滴形成中表现出不同的特性。与圆柱形TiO2(10 nm×40 nm)纳米颗粒相比,在DIW中添加球形TiO2(15 nm)纳米颗粒的液滴尺寸要小得多。除了改变基础流体的界面特性外,纳米粒子还可以通过在界面处引入界面滑移来影响纳米流体的液滴形成。除了具有圆柱形纳米颗粒的纳米流体以外,发现液滴尺寸随温度升高而增加。

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