Intensification of Heat Transfer During Boiling and Condensation by Means of Micro- and Nanoparticle Coatings
暂无分享,去创建一个
[1] Yu. A. Kuzma-Kichta,et al. Studying the wetting of a surface with combined structure , 2021, Thermophysics and Aeromechanics.
[2] Yu. A. Kuzma-Kichta,et al. Wetting of Hydrophobic and Hydrophilic Coatings , 2021, Journal of Engineering Physics and Thermophysics.
[3] Yu. A. Kuzma-Kichta,et al. Investigation of transport properties of porous coatings from nanoparticles of aluminum oxide , 2021, Journal of Physics: Conference Series.
[4] L. Vasiliev. Heat Pipes, Nanofluids, and Nanotechnologies , 2021, Journal of Engineering Physics and Thermophysics.
[5] Yu. A. Kuzma-Kichta,et al. Transport Properties of Coatings Consisting of Al2O3 Nanoparticles , 2021 .
[6] A. Avramenko,et al. Distinctive Features of the Use of Nanofluids To Enhance Boiling Heat Transfer , 2020 .
[7] A. S. Kiselev,et al. Research of wetting on micro- and nano-scale coating , 2019, Journal of Physics: Conference Series.
[8] Chen Feng,et al. Evaporation of ethanol films wicking on structured, porous coatings deposited on copper plates , 2019, International Journal of Heat and Mass Transfer.
[9] V. V. Kuznetsov,et al. The Influence of the Mass Flow Rate on the Critical Heat Flux during Subcooled Deionized Water Boiling in a Microchannel Cooling System , 2018, Technical Physics Letters.
[10] Yu. A. Kuzma-Kichta,et al. Nanoparticle coating of a microchannel surface is an effective method for increasing the critical heat flux , 2017 .
[11] Doris Vollmer,et al. Candle Soot as a Template for a Transparent Robust Superamphiphobic Coating , 2012, Science.
[12] W. Li,et al. Correlations for Saturated Critical Heat Flux in Microchannels , 2011 .
[13] W. Hwang,et al. Prediction of contact angle on a microline patterned surface , 2006 .
[14] J. Marchello,et al. Film Condensation in the Presence of a Noncondensable Gas , 1969 .