Department of Mechanical Engineering, National Taiwan University, No, 1, Sec, 4, Roosevelt Rd, Taipei, 10617, Taiwan.
Nanoscale Res Lett. 2012 May 18;7(1):259. doi: 10.1186/1556-276X-7-259.
This study investigated the pool boiling heat transfer under heating surfaces with various interlaced wettability. Nano-silica particles were used as the coating element to vary the interlaced wettability of the surface. The experimental results revealed that when the wettability of a surface is uniform, the critical heat flux increases with the more wettable surface; however, when the wettability of a surface is modified interlacedly, regardless of whether the modified region becomes more hydrophilic or hydrophobic, the critical heat flux is consistently higher than that of the isotropic surface. In addition, this study observed that critical heat flux was higher when the contact angle difference between the plain surface and the modified region was smaller.
本研究探讨了具有不同交错润湿性的加热表面的池沸腾传热。纳米二氧化硅颗粒被用作涂层元素来改变表面的交错润湿性。实验结果表明,当表面的润湿性均匀时,临界热流密度随更润湿性表面的增加而增加;然而,当表面的润湿性被交错地修饰时,无论修饰区域变得更亲水还是更疏水,临界热流密度都始终高于各向同性表面的临界热流密度。此外,本研究还观察到,当平面和修饰区域之间的接触角差较小时,临界热流密度更高。