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Flow pattern transition instability during flow boiling in a single microchannel

机译:在单个微通道中沸腾期间的流型转变不稳定性

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We studied the unique characteristics of flow boiling in a single microchannel, including the periodic pressure drop, mass flow rate, and temperature fluctuations, in terms of a long time period. Experiments were conducted using a single horizontal microchannel and deionized water to study boiling instabilities at very small mass and heat flow rate conditions. A Polydimethylsiloxane (PDMS) rectangular single microchannel had a hydraulic diameter of 103.5 μm and a length of 40 mm. A series of piecewise serpentine platinum micro-heaters were fabricated on the inner bottom wall of the rectangular microchannel to supply thermal energy to the test fluid. Real-time flow visualizations of the flow pattern inside the microchannel were performed simultaneously with measurements of the experimental parameters. Tests were performed for mass fluxes of 170 and 360 kg/m~2 s and heat fluxes of 200-530 kW/m~2. The test results showed that the heated wall temperature, pressure drop, and mass flux all fluctuated with a long period and large amplitude. These periodic fluctuations exactly matched the transition of two alternating flow patterns inside the microchannel: a bubbly/slug flow and an elongated slug/semi-annular flow. Therefore, the flow pattern transition instability in the single microchannel caused a cyclic behavior of the wall temperature, pressure drop, and mass flux, and this behavior had a very long period (100-200 s) and large amplitude.
机译:我们研究了单个微通道中沸腾的独特特征,包括周期性的长期压降,质量流量和温度波动。使用单个水平微通道和去离子水进行实验,以研究在非常小的质量和热流量条件下的沸腾不稳定性。聚二甲基硅氧烷(PDMS)矩形单个微通道的水力直径为103.5μm,长度为40 mm。在矩形微通道的内底壁上制造了一系列分段蛇形的铂微加热器,以向测试流体提供热能。微通道内部流动模式的实时流动可视化与实验参数的测量同时进行。测试的质量通量为170和360 kg / m〜2 s,热通量为200-530 kW / m〜2。测试结果表明,加热后的壁温,压降和质量通量均以较大幅度长时间波动。这些周期性波动恰好与微通道内两个交替流动模式的过渡相匹配:气泡/团状流和拉长的团状/半环形流。因此,单个微通道中流型转变的不稳定性引起了壁温,压降和质量通量的循环行为,并且这种行为具有很长的时间段(100-200 s)并且幅度很大。

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