Article ID Journal Published Year Pages File Type
4993153 International Journal of Heat and Fluid Flow 2017 16 Pages PDF
Abstract
In this study, new modifications have been introduced to improve the performance and accuracy of the S-H phenomenological model. Here, a relation between the electrical-potential and charge-density equations has been made in the form of a boundary condition for charge distribution on the dielectric surface. Some semi-empirical relations are extracted for computing the plasma extension as well as the Debye length which is very important in simulation of the near-wall flow field. Furthermore, the one-equation for estimation of actuator-generated-thrust is corrected by these modifications. The main advantage of the modified model is that the model does not need to further calibration to predict accurately the Debye length, plasma extension and maximum charge density parameter in a range of voltages and frequencies. Promising results have been achieved in the simulation of the induced jet structures in the flat-plate boundary-layer for air as the working fluid.
Related Topics
Physical Sciences and Engineering Chemical Engineering Fluid Flow and Transfer Processes
Authors
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