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A three-dimensional analytical solution of the microheater temperature before bubble nucleation

机译:气泡成核前微加热器温度的三维解析解

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摘要

A three-dimensional analytical solution of the microheater temperature based on heat diffusion equation is developed and compared with experimental results. Dimensionless parameters are introduced to analyze the temperature rise time and the distribution under steady state. To study the microheater temperatures before bubble nucleation, a set of working fluids and microheaters are considered. It is shown that the dimensionless time xi(-)(0) required for the temperature rise from room to 95% of the steady state temperature is about 75, not dependent on working fluids and microheaters. Heat transfer to the surrounding liquid is mainly caused by conduction, not by convection and radiation mechanisms. The microheater length affects the surface temperature uniformity, while its width influences the steady temperatures significantly, yielding the transition from heterogeneous to homogeneous nucleation mechanism from square microheaters to narrow line microheaters. (c) 2007 Elsevier Ltd. All rights reserved.
机译:建立了基于热扩散方程的微加热器温度三维解析解,并与实验结果进行了比较。引入无因次参数来分析温度上升时间和稳态下的分布。为了研究气泡成核之前的微加热器温度,考虑了一组工作流体和微加热器。结果表明,温度从室温升高到稳态温度的95%所需的无量纲时间xi(-)(0)约为75,与工作流体和微型加热器无关。向周围液体的热传递主要是由传导引起的,而不是由对流和辐射机制引起的。微型加热器的长度会影响表面温度的均匀性,而微型加热器的宽度会显着影响稳态温度,从而导致从方形微加热器到窄线微加热器从非均相成核机制过渡到均热成核机制。 (c)2007 Elsevier Ltd.保留所有权利。

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