Pages that link to "Item:Q2458542"
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The following pages link to Thermal characteristics of mixed electroosmotic and pressure-driven microflows (Q2458542):
Displaying 20 items.
- Analysis of heat transfer and entropy generation for a low-Peclet-number microtube flow using a second-order slip model: an extended-Graetz problem (Q521199) (← links)
- Heat transfer in electrokinetic micro-pumps under the influence of various oscillatory excitations (Q821187) (← links)
- An analytical solution for thermally fully developed combined pressure--electroosmotically driven flow in microchannels (Q870937) (← links)
- Semi-analytical solution of the extended Graetz problem for combined electroosmotically and pressure-driven microchannel flows with step-change in wall temperature (Q955784) (← links)
- Analytical solutions of Nusselt number for thermally fully developed flow in microtubes under a combined action of electroosmotic forces and imposed pressure gradients (Q981211) (← links)
- Viscous dissipation effects on thermal transport characteristics of combined pressure and electroosmotically driven flow in microchannels (Q992996) (← links)
- Fully developed hydrodynamic and thermal transport in combined pressure and electrokinetically driven flow in a microchannel with asymmetric boundary conditions (Q1009910) (← links)
- Electro-osmotic flow of power-law fluid and heat transfer in a micro-channel with effects of Joule heating and thermal radiation (Q1619948) (← links)
- Thermally developing flow induced by electro-osmosis in a circular micro-channel (Q1639793) (← links)
- Analytical solution and numerical simulation of the generalized Levèque equation to predict the thermal boundary layer (Q1998255) (← links)
- Electroosmotic flow and heat transfer in a heterogeneous circular microchannel (Q2049841) (← links)
- Heat transfer analysis of mixed convection flow in a vertical microchannel with electrokinetic effect (Q2068860) (← links)
- Pseudo spectral solution of extended Graetz problem for combined pressure-driven and electroosmotic flow in a triangular micro-duct (Q2194818) (← links)
- Joule heating effect of electroosmosis in a finite-length microchannel made of different materials (Q2267894) (← links)
- Micro-scale thermo-fluidic transport in two immiscible liquid layers subject to combined electroosmotic and pressure-driven transport (Q2270915) (← links)
- Investigation of variable-property microchannel flows with electro-thermo-hydrodynamic interactions at constant pressure gradient or constant flow rate (Q2470734) (← links)
- Joule heating effects in electroosmotically driven microchannel flows (Q2486335) (← links)
- Joule-heating effects in mixed electroosmotic and pressure-driven microflows under constant wall heat flux (Q2498453) (← links)
- Investigating simultaneous effects of temperature, surface heterogeneity and geometry on fluid mixing in electroosmotic flow considering temperature dependent properties by Nernst-Planck Poisson method (Q2698404) (← links)
- COMBINED ELECTROOSMOTIC AND PRESSURE DRIVEN FLOW IN TREE-LIKE MICROCHANNEL NETWORK (Q5024008) (← links)