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Enhancement in nucleate pool boiling heat transfer on nano-second laser processed copper surfaces

机译:纳秒激光加工铜表面上成核池沸腾传热的增强

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摘要

The present paper reports the experimental investigation of pool boiling heat transfer on multiscale functionalized copper surfaces. Multiscale functionalized surfaces are fabricated by employing the nano-second laser surface process (NLSP) technique. The heat transfer coefficients (HTCs) of functionalized surfaces are estimated experimentally by using water and acetone as pool liquid. Tests are performed at atmospheric pressure, and saturated pool boiling condition with heat flux varyies between 0 and 330 kW/m(2). The maximum HTCs for functionalized surface and reference polished surface were found to be 41,500 W/m(2)K and 23,000 W/m(2)K, respectively, with water and 22,000 W/m(2)K and 14,000 W/m(2)K, respectively, with acetone.
机译:本文报道了多尺度功能化铜表面上池沸腾传热的实验研究。多尺度功能化表面是通过使用纳秒激光表面处理(NLSP)技术制造的。通过使用水和丙酮作为池液,通过实验估算功能化表面的传热系数(HTC)。测试在大气压和饱和池沸腾条件下进行,热通量在0至330 kW / m(2)之间变化。发现功能化表面和参考抛光表面的最大HTC分别为水和水分别为41,500 W / m(2)K和23,000 W / m(2)K,22,000 W / m(2)K和14,000 W / m (2)K分别用丙酮。

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