The Visualization of Thin Film Evaporation on Thin Micro Sintered Copper Mesh Screen

被引:0
|
作者
Li, Chen [1 ]
Peterson, G. P. [1 ]
Li, Ji
Koratkar, Nikhil
机构
[1] Univ Colorado, Dept Mech Engn, Boulder, CO 80309 USA
来源
HT2008: PROCEEDING OF THE ASME SUMMER HEAT TRANSFER CONFERENCE, VOL 3 | 2009年
关键词
HEAT-TRANSFER;
D O I
暂无
中图分类号
O414.1 [热力学];
学科分类号
摘要
The thin film evaporation process through use of thin micro-scale sintered copper mesh screen was proven to be a very effective heat transfer mechanism with high critical heat flux (CHF). This efficient heat transfer mechanism is widely used in designing heat pipe, Capillary Pumped Loops (CPL), and drying process, however, the nucleation process and meniscus dynamics at the liquid-vapor-solid interface are not directly observed and systematically studied. Very. few visual investigation in thin film evaporation has been conducted. In the existing two visual studies, the interface thermal resistance between coating and the heated wall was not seriously considered, and the heat flux was limited below 35 W/cm(2). In this visualization investigation, the nucleation process and meniscus dynamics from initial condition to drying out were observed and well documented. To minimize the interface thermal resistance, the micro scale wicking was sintered to heated wall directly. High quality images were acquired through a well-designed visualization system. The majority of nucleate bubbles, whose diameters are at a magnitude of 10 mu m, were found to form on the top wire surfaces instead of inside the porous media at moderate heat flux. Few large size bubbles were observed to grow inside capillary wicks, however, their presence did not seem to stop the evaporation process as reported before. The menisci receding process was visually captured for the first time. The minimum menisci radius was found to form at the smallest corners and pores. It is also illustrated the thin liquid area increases when the menisci recede and the thin liquid film evaporation is the dominant heat transfer mode at high heat flux. The present work visually confirms the heat transfer regimes of evaporation on micro porous media, which was proposed by Li and Peterson [2], and further improves the understanding to the nucleate boiling and thin liquid film evaporation on the surfaces of micro sintered copper mesh screen.
引用
收藏
页码:645 / 650
页数:6
相关论文
共 45 条
  • [1] Thin-Film Evaporation in a Mesh Screen Wick
    Remella, Karthik S.
    Gerner, Frank M.
    JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2022, 144 (11):
  • [2] Rational Micro/Nanostructuring for Thin-Film Evaporation
    Farokhnia, Nazanin
    Irajizad, Peyman
    Sajadi, Seyed Mohammad
    Ghasemi, Hadi
    JOURNAL OF PHYSICAL CHEMISTRY C, 2016, 120 (16): : 8742 - 8750
  • [3] Thin film evaporation on a curved surface
    Demsky, SM
    Ma, HB
    MICROSCALE THERMOPHYSICAL ENGINEERING, 2004, 8 (03): : 285 - 299
  • [4] Measurement of thin-film evaporation heat transfer for evaporators with sintered powder wick structure
    Lee, Cho-Han
    Tsai, Yao-Yang
    ADVANCED MANUFACTURING FOCUSING ON MULTI-DISCIPLINARY TECHNOLOGIES, 2012, 579 : 379 - 386
  • [5] MECHANISMS OF HEAT TRANSFER IN THIN FILM EVAPORATION
    Yan, Chunji
    Deng, Yangbo
    PROCEEDINGS OF THE ASME SUMMER HEAT TRANSFER CONFERENCE, 2012, VOL 1, 2012, : 541 - 547
  • [6] Thin-Film Evaporation in an Evaporating Droplet
    Dhavaleswarapu, H. K.
    Migliaccio, C. P.
    Garimella, S. V.
    Murthy, J. Y.
    JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2009, 131 (08):
  • [7] Visualization of an Evaporating Thin Layer during the Evaporation of a Nanofluid Droplet
    Shin, Dong Hwan
    Allen, Jeffrey S.
    Choi, Chang Kyoung
    Lee, Seong Hyuk
    LANGMUIR, 2015, 31 (04) : 1237 - 1241
  • [8] Design of micropillar wicks for thin-film evaporation
    Adera, Solomon
    Antao, Dion
    Raj, Rishi
    Wang, Evelyn N.
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2016, 101 : 280 - 294
  • [9] Analysis of the Wicking and Thin-Film Evaporation Characteristics of Microstructures
    Ranjan, Ram
    Murthy, Jayathi Y.
    Garimella, Suresh V.
    JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2009, 131 (10): : 1 - 11
  • [10] Parametric study of thin film evaporation from nanoporous membranes
    Wilke, Kyle L.
    Barabadi, Banafsheh
    Lu, Zhengmao
    Zhang, TieJun
    Wang, Evelyn N.
    APPLIED PHYSICS LETTERS, 2017, 111 (17)