[go: up one dir, main page]

Bryan et al., 1997 - Google Patents

Heat transport enhancement of monogroove heat pipe with electrohydrodynamic pumping

Bryan et al., 1997

Document ID
7923913660364894335
Author
Bryan J
Seyed-Yagoobi J
Publication year
Publication venue
Journal of Thermophysics and Heat Transfer

External Links

Snippet

Space Station has resulted in many signifi cant changes to the active thermal control system. The baseline active thermal control system was to be a two-phase pumped loop using highcapacity monogroove heat pipe radiators as the heat rejection medium to space …
Continue reading at arc.aiaa.org (other versions)

Similar Documents

Publication Publication Date Title
Bryan et al. Heat transport enhancement of monogroove heat pipe with electrohydrodynamic pumping
Jones Electrohydrodynamically enhanced heat transfer in liquids—a review
Yabe et al. Active heat transfer enhancement by utilizing electric fields
Shahin et al. Enhanced cooling of shape memory alloy wires using semiconductor" heat pump" modules
Pearson et al. Advances in electrohydrodynamic conduction pumping
Suman A steady state model and maximum heat transport capacity of an electrohydrodynamically augmented micro-grooved heat pipe
EP2896926A1 (en) A heat transfer apparatus
Jones et al. Electrohydrodynamic heat pipe experiments
Nourdanesh et al. Experimental study of heat transfer enhancement in electrohydrodynamic conduction pumping of liquid film using flush electrodes
US4396055A (en) Electrohydrodynamic inductively pumped heat pipe
Ramos Electrohydrodynamic and magnetohydrodynamic micropumps
Jeong et al. Fluid circulation in an enclosure generated by electrohydrodynamic conduction phenomenon
Yu et al. Electrohydrodynamically augmented micro heat pipes
Feng et al. Control of liquid flow distribution utilizing EHD conduction pumping mechanism
Cheung et al. EHD-assisted external condensation of R-134a on smooth horizontal and vertical tubes
Patel et al. Effect of gravity on electrohydrodynamic conduction driven liquid film flow boiling
Eames et al. Potential benefits of electrohydrodynamic enhancement of two-phase heat transfer in the design of refrigeration systems
JP2004504797A (en) Electrohydrodynamic conduction pump
Babin et al. Experimental investigation of an ion-drag pump-assisted capillary loop
Bryan et al. Electrohydrodynamically enhanced convective boiling: Relationship between electrohydrodynamic pressure and momentum flux rate
Patel et al. Dielectric fluid flow generation in meso-tubes with micro-scale electrohydrodynamic conduction pumping
Jeong et al. Performance characteristics of electrohydrodynamic conduction pump in two-phase loops
Feng et al. Control of adiabatic two-phase dielectric fluid flow distribution with EHD conduction pumping
Grassi et al. Heat transfer enhancement in a vertical annulus by electrophoretic forces acting on a dielectric liquid
Mo et al. Startup time reduction in an electrohydrodynamically enhanced capillary pumped loop