Objectives: This paper aims to simulate EHD ion-drag pumping model using Finite Difference Method (FDM) and to apply the idea of parallelism to reduce the computational time. Methods: The numerical simulation of EHD ion-drag pumping plays an important part not only to understand the different working principles but also enables to model the designs with better performance. Since the performance of EHD pumps depends on the shapes and geometries of the actuator electrodes, therefore the variation in the geometric dimensions of the electrodes require dense and fine meshes for numerical solution. Consequently, the numerical simulations take unacceptably more execution time on sequential computers. For that reason, a Data Parallel Algorith...
This paper discusses the implementation of a numerical algorithm for simulating incompressible fluid...
The operation of a sequential electrochemical microscope is described using partial differential equ...
When lacquering in the classical way, i. e., by spraying just with compressed air, half of the mater...
The numerical solution of a computationally intensive model becomes more complex in terms of executi...
Computational models can be used to simulate a prototype of electrohydrodynamic (EHD) ion-drag micro...
Computational models can be used to simulate a prototype of electrohydrodynamic (EHD) ion-drag micro...
This paper describes the concept of Electrohydrodynamic (EHD) pumping in microchannels and the study...
In this investigation, the numerical simulation of electrohydrodynamic (EHD) ion-drag micropumps wit...
This project is about studies of ion-drag EHD micropump and to design a readyto-fabricate improved ...
The efficiency of conversion of electrical power into fluidic power in an electrohydrodynamic (EHD) ...
Numerical study has been conducted on the electro-hydrodynamic (EHD) pumping method in terms of a re...
Thesis (Ph.D.)--University of Washington, 2019From a physical perspective, electrohydrodynamic (EHD)...
We propose a bi-directional electrohydrodynamic pump developed for transporting dielectric liquid, w...
To deal with increasing heat fluxes in electronic devices and sensors, innovative new thermal manage...
This paper presents a mathematical model establishing the velocity limit of EHD fluid accelerators w...
This paper discusses the implementation of a numerical algorithm for simulating incompressible fluid...
The operation of a sequential electrochemical microscope is described using partial differential equ...
When lacquering in the classical way, i. e., by spraying just with compressed air, half of the mater...
The numerical solution of a computationally intensive model becomes more complex in terms of executi...
Computational models can be used to simulate a prototype of electrohydrodynamic (EHD) ion-drag micro...
Computational models can be used to simulate a prototype of electrohydrodynamic (EHD) ion-drag micro...
This paper describes the concept of Electrohydrodynamic (EHD) pumping in microchannels and the study...
In this investigation, the numerical simulation of electrohydrodynamic (EHD) ion-drag micropumps wit...
This project is about studies of ion-drag EHD micropump and to design a readyto-fabricate improved ...
The efficiency of conversion of electrical power into fluidic power in an electrohydrodynamic (EHD) ...
Numerical study has been conducted on the electro-hydrodynamic (EHD) pumping method in terms of a re...
Thesis (Ph.D.)--University of Washington, 2019From a physical perspective, electrohydrodynamic (EHD)...
We propose a bi-directional electrohydrodynamic pump developed for transporting dielectric liquid, w...
To deal with increasing heat fluxes in electronic devices and sensors, innovative new thermal manage...
This paper presents a mathematical model establishing the velocity limit of EHD fluid accelerators w...
This paper discusses the implementation of a numerical algorithm for simulating incompressible fluid...
The operation of a sequential electrochemical microscope is described using partial differential equ...
When lacquering in the classical way, i. e., by spraying just with compressed air, half of the mater...