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Thermal phenomena in electrohydrodynamic (EHD) drying
Alex Martynenko
, N. N. Misra
Environmental Science
Research output
:
Contribution to journal
›
Article
›
peer-review
5
Citations (Scopus)
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Keyphrases
AC Corona Discharge
50%
AC Heating
25%
Amount of Heat
25%
Applied Current
25%
Applied Voltage
25%
Cooling Effect
25%
Corona Discharge
25%
Current Density
100%
Current Rate
25%
Dielectric
25%
Dielectric Barrier
50%
Dielectric Heating
25%
Dielectric Plate
25%
Discharge Current
25%
Drying Rate
25%
Electric Field Strength
50%
Electrohydrodynamic Drying
100%
Electrohydrodynamic System
25%
Heating Effect
25%
Joule Heating
50%
Material Temperature
25%
Multi-pin
25%
Point Density
25%
Strong Electric Field
25%
Surface Material
50%
Thermal Phenomena
100%
Water Evaporation
25%
Wet Material
25%
Wet-bulb Temperature
50%
Engineering
Applied Voltage
20%
Cooling Effect
20%
Corona Discharge
60%
Dielectrics
100%
Drying Rate
20%
Electric Field Strength
40%
Heating Effect
20%
Initial Stage
20%
Material Surface
40%
Strong Electric Field
20%
Wet-Bulb Temperature
40%
Chemical Engineering
Dielectric Heating
50%
Joule Heating
100%