The influence of microstructured surfaces and liquid pulsations on increasing heat transfer in a minichannel

Author:

Litvintceva Anastasia A.,Cheverda Vyacheslav V.,Agazhanov Alibek Sh.

Abstract

The paper compares two methods for improving the intensification of heat transfer during boiling in a rectangular minichannel. Studies were carried out of the influence of additive structures on the crisis of heat transfer in a minichannel with a two-phase flow, as well as studies of the influence of high-frequency pulsations of liquid flow on the intensification of heat transfer processes during flow boiling.

Publisher

EDP Sciences

Subject

General Medicine

Reference10 articles.

1. Yang P., Zhang Y., Wang X., and Liu Y. Int. J. Heat Mass Transfer, 127 (2018)

2. Kærn M.R., Elmegaard B., Meyer K.E., Palm B. Continuous vs. pulsating flow boiling. Part 1Experimental comparison and visualization, International Refrigeration and Air conditioning Conference, Purdue (2016)

3. Kærn M.R., Elmegaard B., Meyer K.E., Palm B. Continuous vs pulsating flow boiling. Part 2- Statistical comparison using response surface methodology, International Refrigeration and Air conditioning Conference, Purdue (2016)

4. Wang X., Tang K., Hrnjak P.S. Appl. Therm. Eng., 99 (2016)

5. Zhao D.W., Su G.H., Liang Z.H., Zhang Y.J., Tian W.X., Qiu S.Z. Int. J. Multiphase Flow, 37 (2011)

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