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Ting-Yu Hsu1, Hung-Chih Chen1, Chung-Te Huang1,2
1Department of Mechanical Engineering, National Taiwan University, Taipei, 10617, Taiwan.
Small methods
|February 24, 2025
概括
带有不对称的回入微槽 (ARG表面) 的工程表面显著改善了热表面的滴滴冷却. 这些新型表面减少了滴滴接触时间,并增强了热传递,即使在高达725°C的极端温度下也是如此.
科学领域:
- 材料科学 材料科学 材料科学
- 热力工程是热力工程中的一个.
- 流体动力学 流体动力学
背景情况:
- 滴滴对热表面的影响对于热管理至关重要.
- 有效的冷却需要快速的滴滴分离,定向流失,并抑制Leidenfrost效应.
- 现有的表面在高温下无法同时实现所有这些.
研究的目的:
- 介绍和描述新的非对称的回入式微槽 (ARG) 表面.
- 为了证明同时减少接触时间,定向脱落和莱登的抑制.
- 开发一个理论模型来预测这些表面上的Leidenfrost点 (LFPs).
主要方法:
- 制造具有不对称的回入微槽的ARG表面.
- 在350至650°C的温度下进行实验性滴滴冲击分析.
- 开发一个用于LFP预测的理论模型.
- 使用温度分析进行比较热性能分析.
主要成果:
- 在ARG表面,LFP的温度高达725°C.
- 接触时间在测试温度下低于理论极限.
- 观察到增强的滴滴速度和位移因子.
- 与普通表面相比,ARG表面显示出更高的冷却性能.
结论:
- 在高温应用中,ARG表面为高效的冷却提供了有前途的解决方案.
- 这些表面克服了现有的工程表面对于液滴热管理的局限性.
- 开发的理论模型有助于设计具有量身定制的LFP特征的表面.
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