在干燥的不湿表面上滴状凝结热传递的极限
Sandeep Hatte1, Ranga Pitchumani1
1Advanced Materials and Technologies Laboratory, Department of Mechanical Engineering, Virginia Tech, Blacksburg, VA 24061-0238, USA.
iScience
|November 5, 2024
概括
研究人员确定了压缩表面冷凝热传递的理论上限,确定了在发电和海水淡化等应用中提高效率的潜力.
科学领域:
- 热力学是一种热力学.
- 表面科学是一门学科.
- 热传递热量转移的方法
背景情况:
- 表面凝结对于发电和海水淡化至关重要.
- 与薄膜凝结相比,防湿表面提供了更好的滴状凝结.
- 目前还没有最大凝结热传递的理论上限.
研究的目的:
- 为了建立凝结热传递的理论上限.
- 为了统一引力驱动和跳跃滴滴凝结模式.
- 分析增强热传输的机会差距.
主要方法:
- 模拟表面地形作为碎形表面.
- 开发了冷凝热传递的理论上限.
- 将实验数据与理论界限进行比较.
主要成果:
- 理论上限是引力驱动和跳跃滴滴凝结的.
- 确定了理论最大热传输的机会差距.
- 固体注入表面的性能更接近理论上限.
结论:
- 理论上限为凝结热传递提供了一个基准.
- 碎形表面建模为凝结分析提供了一种统一的方法.
- 固体注入表面显示出最大限度地提高凝结效率的前景.
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