he governing equations of electrohydrodynamics pertinent to forced and free electroconvection have been examined in the context of an array of charge injection atomization systems for dielectric electrically insulating liquids. The underlying physics defining their operation has been described further by linking the internal charge injection process inside the atomizer with resulting charged liquid jet characteristics outside it. A new nondimensional number termed the electric jet Reynolds number Re E,j is required to describe charge injection systems universally. The electric jet Reynolds number Re E,j varies linearly with the inter-electrode gap electric Reynolds number Re E, and the inter-electrode gap Reynolds number Re E varies linearl...
Electrostatic atomization of electrically insulating liquids has a number of potential uses with res...
A dielectric fluid can be set into motion with the help of electric forces, mainly Coulomb force. Th...
Abstract: This paper illustrates the variation in the droplet size with the change in the parameters...
This review paper provides an overview of the governing equations of electrohydrodynamics pertaining...
This review paper provides an overview of the governing equations of electrohydrodynamics pertaining...
A charge injection atomizer functions by introducing electric charge discharged from a high voltage ...
The dynamics and controlling mechanisms of a charge injection electrostatic atomization method for i...
The parametric evaluation of the variables that define the operation of a charge injection electrost...
A charge injection atomizer functions by introducing electric charge discharged from a high voltage ...
The electrical and atomization performance of a plane-plane charge injection atomizer using a dielec...
The electrical and atomization performance of a plane–plane charge injection atomizer using a dielec...
Electrostatic atomization of electrically insulating liquids has a number of potential uses with res...
Charge injection atomizers are energy efficient devices that can be used in order to promote the at...
Here the characteristics of charged sprays of insulating liquids generated by an improved charge inj...
Two versions of a charge injection electrostatic atomizer design, useful for producing charged spray...
Electrostatic atomization of electrically insulating liquids has a number of potential uses with res...
A dielectric fluid can be set into motion with the help of electric forces, mainly Coulomb force. Th...
Abstract: This paper illustrates the variation in the droplet size with the change in the parameters...
This review paper provides an overview of the governing equations of electrohydrodynamics pertaining...
This review paper provides an overview of the governing equations of electrohydrodynamics pertaining...
A charge injection atomizer functions by introducing electric charge discharged from a high voltage ...
The dynamics and controlling mechanisms of a charge injection electrostatic atomization method for i...
The parametric evaluation of the variables that define the operation of a charge injection electrost...
A charge injection atomizer functions by introducing electric charge discharged from a high voltage ...
The electrical and atomization performance of a plane-plane charge injection atomizer using a dielec...
The electrical and atomization performance of a plane–plane charge injection atomizer using a dielec...
Electrostatic atomization of electrically insulating liquids has a number of potential uses with res...
Charge injection atomizers are energy efficient devices that can be used in order to promote the at...
Here the characteristics of charged sprays of insulating liquids generated by an improved charge inj...
Two versions of a charge injection electrostatic atomizer design, useful for producing charged spray...
Electrostatic atomization of electrically insulating liquids has a number of potential uses with res...
A dielectric fluid can be set into motion with the help of electric forces, mainly Coulomb force. Th...
Abstract: This paper illustrates the variation in the droplet size with the change in the parameters...