217
Views
22
CrossRef citations to date
0
Altmetric
feature articles

Investigation of Electrohydrodynamically-Enhanced Convective Heat and Mass Transfer from Water Surface

&
Pages 138-146 | Published online: 14 Jul 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

Jin-Sheng Leu, Jiin-Yuh Jang & Yi-Hsuan Wu. (2020) Three-Dimensional Electrohydrodynamic Enhanced Water Evaporation Using Needle-Arrayed Electrodes. Heat Transfer Engineering 41:22, pages 1921-1937.
Read now
N. N. Misra, Alex Martynenko, Farid Chemat, Larysa Paniwnyk, Francisco J. Barba & Anet Režek Jambrak. (2018) Thermodynamics, transport phenomena, and electrochemistry of external field-assisted nonthermal food technologies. Critical Reviews in Food Science and Nutrition 58:11, pages 1832-1863.
Read now
Somayeh Taghian Dinani, Michel Havet, Nasser Hamdami & Mohammad Shahedi. (2014) Drying of Mushroom Slices Using Hot Air Combined with an Electrohydrodynamic (EHD) Drying System. Drying Technology 32:5, pages 597-605.
Read now
Ashutosh Singh, Valerie Orsat & Vijaya Raghavan. (2012) A Comprehensive Review on Electrohydrodynamic Drying and High-Voltage Electric Field in the Context of Food and Bioprocessing. Drying Technology 30:16, pages 1812-1820.
Read now
A.A. Alemrajabi, F. Rezaee, M. Mirhosseini & Ali Esehaghbeygi. (2012) Comparative Evaluation of the Effects of Electrohydrodynamic, Oven, and Ambient Air on Carrot Cylindrical Slices during Drying Process. Drying Technology 30:1, pages 88-96.
Read now

Articles from other publishers (17)

Lu-Hao Liu, Yi-Fan Han, Qun Wang & Qing-Fei Fu. (2022) Evaporation of supercritical droplets in an electric field using molecular dynamics simulation. AIP Advances 12:4.
Crossref
Navid Zehtabiyan-Rezaie, Kazimierz Adamiak & Majid Saffar-Avval. (2021) Enhancement of evaporation from liquid surfaces due to electrohydrodynamic flow: A review. Journal of Electrostatics 114, pages 103630.
Crossref
Jiameng Tian, Tianyue Zhao, Zhifu Zhou, Bin Chen, Junfeng Wang & Junhui Xiong. (2021) Isolated moving charged droplet evaporation characteristics in electrostatic field with highly volatile R134a. International Journal of Heat and Mass Transfer 178, pages 121583.
Crossref
Navid Zehtabiyan-Rezaie, Majid Saffar-Avval & Kazimierz Adamiak. (2020) On the evaporation enhancement from saline water due to corona discharge generated EHD flow: A numerical and experimental study. International Communications in Heat and Mass Transfer 119, pages 104988.
Crossref
Alexander A. Fedorets, Leonid A. Dombrovsky, Dmitry N. Gabyshev, Edward Bormashenko & Michael Nosonovsky. (2020) Effect of external electric field on dynamics of levitating water droplets. International Journal of Thermal Sciences 153, pages 106375.
Crossref
Alexander A. Fedorets, Leonid A. Dombrovsky, Edward Bormashenko & Michael Nosonovsky. (2019) On relative contribution of electrostatic and aerodynamic effects to dynamics of a levitating droplet cluster. International Journal of Heat and Mass Transfer 133, pages 712-717.
Crossref
F. Fazlollahi & A.A. Alemrajabi. (2018) Effect of fin and electrodes on electro-hydrodynamic enhanced heat transfer in enclosures. International Journal of Thermal Sciences 127, pages 194-200.
Crossref
Qiang Ma & Zhenqian Chen. (2017) Numerical study on the effect of EHD flow on mass transfer of gas mixtures. International Journal of Numerical Methods for Heat & Fluid Flow 27:10, pages 2268-2288.
Crossref
Ameneh Elmizadeh, Mohammad Shahedi & Nasser Hamdami. (2017) Comparison of electrohydrodynamic and hot-air drying of the quince slices. Innovative Food Science & Emerging Technologies 43, pages 130-135.
Crossref
Alex Martynenko, Tess Astatkie, Nicolas Riaud, Patrick Wells & Tadeusz Kudra. (2017) Driving forces for mass transfer in electrohydrodynamic (EHD) drying. Innovative Food Science & Emerging Technologies 43, pages 18-25.
Crossref
Alex Martynenko & Tadeusz Kudra. (2016) Electrically-induced transport phenomena in EHD drying – A review. Trends in Food Science & Technology 54, pages 63-73.
Crossref
Sujoy Kumar Saha, Manvendra Tiwari, Bengt Sundén & Zan WuSujoy Kumar Saha, Manvendra Tiwari, Bengt Sundén & Zan Wu. 2016. Advances in Heat Transfer Enhancement. Advances in Heat Transfer Enhancement 59 73 .
Somayeh Taghian Dinani & Michel Havet. (2015) Effect of voltage and air flow velocity of combined convective-electrohydrodynamic drying system on the physical properties of mushroom slices. Industrial Crops and Products 70, pages 417-426.
Crossref
Somayeh Taghian Dinani, Nasser Hamdami, Mohammad Shahedi, Michel Havet & Delphine Queveau. (2015) Influence of the electrohydrodynamic process on the properties of dried button mushroom slices: A differential scanning calorimetry (DSC) study. Food and Bioproducts Processing 95, pages 83-95.
Crossref
Somayeh Taghian Dinani & Michel Havet. (2015) The influence of voltage and air flow velocity of combined convective-electrohydrodynamic drying system on the kinetics and energy consumption of mushroom slices. Journal of Cleaner Production 95, pages 203-211.
Crossref
Bin Xu, Baogang Zhang, Miao Li, Weiwei Huang, Nan Chen, Chuanping Feng & Lijun Yao. (2014) Production of reducing sugars from corn stover by electrolysis. Journal of Applied Electrochemistry 44:7, pages 797-806.
Crossref
L. Léal, M. Miscevic, P. Lavieille, M. Amokrane, F. Pigache, F. Topin, B. Nogarède & L. Tadrist. (2013) An overview of heat transfer enhancement methods and new perspectives: Focus on active methods using electroactive materials. International Journal of Heat and Mass Transfer 61, pages 505-524.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.