INFRARED THERMOGRAPHY OF DROPWISE EVAPORATIVE COOLING

被引:10
作者
KLASSEN, M [1 ]
DIMARZO, M [1 ]
SIRKIS, J [1 ]
机构
[1] UNIV MARYLAND,DEPT MECH ENGN,COLLEGE PK,MD 20742
关键词
INFRARED THERMOGRAPHY; EVAPORATIVE COOLING; DROPLET FLOW; IMAGE PROCESSING;
D O I
10.1016/0894-1777(92)90063-B
中图分类号
O414.1 [热力学];
学科分类号
摘要
An infrared thermographic technique is developed to obtain the transient solid surface temperature distribution in the neighborhood of an evaporating droplet. This technique is nonintrusive and is not affected by the time response of the measuring device (i.e., thermocouple). The entire surface is monitored at any instant of time, and information on the area influenced by the evaporative cooling process is easily derived. A detailed description of the image processing based data reduction is provided. A water droplet in the range of 10-50-mu-L is deposited on an opaque glasslike material (Macor) that has an initial surface temperature between 100 and 165-degrees-C. The evaporative cooling process is fully documented, and these new findings are contrasted with the published literature to gain a better understanding of the phenomena involved.
引用
收藏
页码:136 / 141
页数:6
相关论文
共 12 条
[1]  
Toda, A Study of Mist Cooling, 1st Report: Investigation of Mist Cooling, Heat Transfer Jpn. Res., 1, pp. 39-50, (1972)
[2]  
Bonacina, Del Giudice, Comini, Dropwise Evaporation, J. Heat Transfer, Trans. ASME, 101, pp. 441-446, (1979)
[3]  
Rizza, A Numerical Solution to Dropwise Evaporation, J. Heat Transfer, Trans. ASME, 103, pp. 501-507, (1981)
[4]  
Seki, Kawamura, Sanokawa, Transient Temperature Profile of a Hot Wall due to an Impinging Liquid Droplets, J. Heat Transfer, Trans. ASME, 100, pp. 167-169, (1978)
[5]  
di Marzo, Evans, Dropwise Evaporative Cooling of High Thermal Conductivity Materials, Heat Technol., 5, 1-2, pp. 126-136, (1987)
[6]  
Michiyoshi, Makino, Heat Transfer Characteristics of Evaporation of a Liquid Droplet on Heated Surfaces, International Journal of Heat and Mass Transfer, 21, pp. 605-613, (1978)
[7]  
Abu-Zaid, Atreya, Effect of Water on Piloted Ignition of Cellulosic Materials, Natl. Inst. Standards and Technology Rep. NIST-GCR-89-561, (1989)
[8]  
di Marzo, Evans, Evaporation of a Water Droplet Deposited on a Hot High Conductivity Solid Surface, J. Heat Transfer, Trans. ASME, 111, pp. 210-213, (1989)
[9]  
di Marzo, Wang, Meng, Transient Cooling of a Hot Surface by Droplets Evaporation, Natl. Bureau of Standards Rep. NBS-GCR-87-534, (1984)
[10]  
Dawson, Introduction to Image Processing Algorithms, BYTE, 12, 3, pp. 169-186, (1987)