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- W2321866261 abstract "Buoyancy effects on heat transfer enhancement using electrohydrodynamic (EHD) technique is numerically examined for laminar forced convection in a horizontal channel. Attention is also focused on the effect of added buoyancy on the flow stability. The electrical field is generated by positive corona from a wire electrode charged with a high dc voltage (10 < V0 <, 17.5 kV). The flow Reynolds numbers and thermal buoyancy strength considered are in the range of 600 < Re < 1800 and 10 <, Gr < 10, respectively. It is found that heat transfer enhancement increases with the applied voltage. For a given electric field, oscillation in the flow and temperature fields has been observed for flows at small Reynolds numbers. In addition, the flow and temperature fields become more unstable with an increase in the thermal buoyancy strength. Due to the existence of secondary flows, there is an improvement in heat transfer. However, it is observed that thermal buoyancy has a negligible effect on the heat transfer enhancement for Gr < 10. b d Dh E E. Nomenclature ion mobility of the fluid, [nrrVV-s] distance between wire and plate, [m] hydraulic diameter, [m] electric field, [V/m] electric field strength in x-direction, [V/m] 1 Assistant Professor, Member AIAA 2 Graduate Research Assistant, currently at Governair Corp., OKC, OK 73118 3 Graduate Research Assistant, currently at CMI Corp., OKC, OK 73128 9 Gr h h J k L L Nu Nu Nu," @default.
- W2321866261 created "2016-06-24" @default.
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- W2321866261 date "1997-01-06" @default.
- W2321866261 modified "2023-09-24" @default.
- W2321866261 title "Effects of buoyancy on EHD-enhanced forced convection in a horizontal channel" @default.
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- W2321866261 doi "https://doi.org/10.2514/6.1997-594" @default.
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