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首页> 外文期刊>International communications in heat and mass transfer >Nucleate and film boiling on a microheater under pulse heating in a microchannel
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Nucleate and film boiling on a microheater under pulse heating in a microchannel

机译:在微通道中在脉冲加热下在微加热器上成核并成膜

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摘要

Using MEMS technology, a Pt microheater (60 × 100 μm~2) fabricated on a glass wafer is placed in a silicon-based microchannel of trapezoidal cross section. With the aid of a high-speed CCD and based on Pt's linear temperature-resistance characteristic, flow boiling phenomena and temperature response on the surface of the microheater in the microchannel under pulse heating are observed and recorded. At a given mass flux, nucleate boiling and film boiling begin to appear on the microheater with increasing heat flux. A flow boiling map, showing the effects of heat and mass flux on nucleate and film boiling regimes on the microheater at a pulse heating width of 2 ms, is presented. It is found that nucleate boiling is changed to film boiling as the heat flux supplied to the microheater is increased. Furthermore, increasing mass flux increases the heat flux required for the incipience of nucleate boiling and film boiling on the microheater in the microchannel.
机译:使用MEMS技术,在玻璃晶片上制造的Pt微型加热器(60×100μm〜2)放置在梯形横截面的硅基微通道中。借助高速CCD并基于Pt的线性耐温特性,观察并记录了脉冲加热下微通道中微加热器表面上的沸腾现象和温度响应。在给定的质量通量下,随着热通量的增加,微加热器上开始出现核沸腾和膜沸腾。给出了流动沸腾图,显示了在2 ms的脉冲加热宽度下,热量和质量通量对微型加热器上的成核和薄膜沸腾状态的影响。已经发现,随着提供给微型加热器的热通量的增加,成核沸腾变成膜沸腾。此外,增加质量通量会增加在微通道中的微加热器上开始核沸腾和膜沸腾所需的热通量。

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