Golliher et al., 2013 - Google Patents
Exploration of Impinging Water Spray Heat Transfer at System Pressures near the Triple PointGolliher et al., 2013
View PDF- Document ID
- 9594427425181994946
- Author
- Golliher E
- Yao S
- Publication year
- Publication venue
- ASME International Mechanical Engineering Congress and Exposition
External Links
Snippet
The heat transfer of a water spray impinging upon a surface in a very low pressure environment is of interest to cooling of space vehicles during launch and re-entry, and to industrial processes where flash evaporation occurs. At very low pressure, the process …
- 239000007921 spray 0 title abstract description 71
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Kim et al. | Frosting characteristics on hydrophobic and superhydrophobic surfaces: A review | |
Jin et al. | Experimental investigation of the impact and freezing processes of a water droplet on an ice surface | |
Soltis et al. | Evaluation of ice-adhesion strength on erosion-resistant materials | |
Warrier et al. | Nucleate pool boiling experiment (NPBX) in microgravity: International Space Station | |
Colin et al. | Nucleate pool boiling in microgravity: Recent progress and future prospects | |
Chimier et al. | Heating model for metals irradiated by a subpicosecond laser pulse | |
Hatakenaka et al. | Magic carpet breakup of a drop impacting onto a heated surface in a depressurized environment | |
Shi et al. | Experimental investigation on pool boiling heat transfer on untreated/super-hydrophilic metal foam under microgravity | |
EP3299301B1 (en) | System and method for cooling a body | |
Kim et al. | Study of Leidenfrost mechanism in droplet impacting on hydrophilic and hydrophobic surfaces | |
Hill et al. | Collisions of small ice particles under microgravity conditions | |
Wang et al. | Heat transfer characteristics of spray cooling beyond critical heat flux under severe heat dissipation condition | |
Jia et al. | Investigation of liquid droplet evaporation in subcritical and supercritical gaseous environments | |
Sebilleau et al. | Air humidity effects on water-drop icing | |
Austin et al. | Rarefied gas model of Io's sublimation-driven atmosphere | |
Golliher et al. | Exploration of Impinging Water Spray Heat Transfer at System Pressures near the Triple Point | |
Wang et al. | Temperature-based analysis of droplet cooling and freezing on femtosecond laser textured surfaces | |
Marinyuk | Heat and mass transfer under frosting conditions | |
Mudawar et al. | Microgravity flow boiling experiments with liquid-vapor mixture inlet onboard the International Space Station | |
Zaghdoudi et al. | POOL BOILING HEAT TRANSFER ENHANCEMENT BY MEANS OF HIGH DC ELECTRIC FIELD. | |
Yarygin et al. | Near-wall liquid film ejection with co-current gas flow from nozzle into vacuum | |
Kulev et al. | Drop tower experiments on non-isothermal reorientation of cryogenic liquids | |
Iwata et al. | INNOVATIVE THERMAL DESIGN SATELLITE WITH NETWORKED VARIABLE-CONDUCTANCE OSCILLATING HEAT PIPES | |
Golliher et al. | Exploration of unsteady spray cooling for high power electronics at microgravity using NASA Glenn’s drop tower | |
Yang et al. | Effects of external heat flux during orbital period of spacecraft on operating characteristics of loop heat pipe |