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Plasma resonance effects on bubble nucleation in flow boiling of a nanofluid irradiated by a pulsed laser beam

机译:等离子体共振对脉冲激光束辐照纳米流体流动沸腾中气泡成核的影响

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摘要

An experimental investigation has been carried out on bubble generation in flow boiling of a nanofluid (suspending gold nanorods in deionized water), heated by a pulsed laser beam with a wavelength of 792 nm. The laser beam can excite the longitudinal mode of localized surface plasma resonance in gold nanorods, having 10 ± 1 nm in diameters and 43 ± 3 nm in lengths. At a concentration of 1.824 μg/ml of gold nanorods, effects of inlet temperature of the nanofluid, laser pulse frequency (at a fixed pulse duty ratio of 50%) and pulse period of the laser (at a fixed pulse duration of 10 ms), on the minimum laser intensity for bubble generation are investigated. It is found that (ⅰ) higher inlet temperature of the nanofluid can lower the laser intensity needed for the vapor generation, and (ⅱ) increasing the pulse frequency of the laser with a given pulse duration can decrease the minimum laser intensity with the same observation time. It is also found that the minimum laser intensity required for bubble generation in the nanofluid has a maximum value at a laser pulse frequency of 100 Hz, when the velocity is in the range of 0.01 m/s to 0.1 m/s.
机译:已经对纳米流体(去离子水中的悬浮金纳米棒)的流动沸腾中的气泡产生进行了实验研究,该纳米流体被波长为792 nm的脉冲激光束加热。激光束可以激发直径为10±1 nm,长度为43±3 nm的金纳米棒中局部表面等离子体共振的纵向模式。在1.824μg/ ml的金纳米棒浓度下,纳米流体的入口温度,激光脉冲频率(在50%的固定脉冲占空比下)和激光的脉冲周期(在10 ms的固定脉冲持续时间内)的影响,对产生气泡的最小激光强度进行了研究。发现(ⅰ)纳米流体的较高入口温度可以降低产生蒸汽所需的激光强度,并且(ⅱ)在给定的脉冲持续时间内增加激光的脉冲频率可以在相同观察下降低最小激光强度时间。还发现当速度在0.01m / s至0.1m / s的范围内时,在纳米流体中产生气泡所需的最小激光强度在100Hz的激光脉冲频率下具有最大值。

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  • 作者单位

    MOE Key Laboratory for Power Machinery and Engineering, School of Mechanical and Power Engineering, Shanghai Jiao Tong University, Shanghai 200240, China;

    MOE Key Laboratory for Power Machinery and Engineering, School of Mechanical and Power Engineering, Shanghai Jiao Tong University, Shanghai 200240, China;

    Qian Xuesen Laboratory of Space Technology, China Academy of Space Technology, Beijing 100094, China;

    Qian Xuesen Laboratory of Space Technology, China Academy of Space Technology, Beijing 100094, China;

    MOE Key Laboratory for Power Machinery and Engineering, School of Mechanical and Power Engineering, Shanghai Jiao Tong University, Shanghai 200240, China,Qian Xuesen Laboratory of Space Technology, China Academy of Space Technology, Beijing 100094, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bubble generation; Nanofluid; gold nanorods; Pulsed laser; Experiment;

    机译:气泡的产生;纳米流体金纳米棒;脉冲激光实验;

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