The pool boiling characteristics of dilute dispersions of alumina, zirconia and silica nanoparticles in water were studied. Consistently with other nanofluid studies, it was found that a significant enhancement in critical heat flux (CHF) can be achieved at modest nanoparticle concentrations (<0.1% by volume). Buildup of a porous layer of nanoparticles on the heater surface occurred during nucleate boiling. This layer significantly improves the surface wettability, as shown by a reduction of the static contact angle on the nanofluid-boiled surfaces compared with the pure-water-boiled surfaces. A review of the prevalent CHF theories has established the nexus between CHF enhancement and surface wettability changes caused by nanoparticle de...
This study examined saturated water/alumina nanofluid pool boiling on a 10-mm-diameter, upward-facin...
Nanofluid pool boiling is assessed as a technique for controlled nanoparticle deposition, which can ...
Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Nuclear Science and Engineering, June...
Abstract. The pool boiling characteristics of dilute dispersions of alumina, zirconia and silica nan...
The pool boiling characteristics of dilute dispersions of alumina, zirconia and silica nanoparticles...
The pool boiling critical heat flux (CHF) performance of aqueous nanofluids was investigated using v...
Buildup of a porous layer of nanoparticles on the heated surface occurs upon boiling of nanofluids c...
Enhancements of nucleate boiling critical heat flux (CHF) using nanofluids in a pool boiling are wel...
To investigate the characteristics of CHF (Critical Heat Flux) enhancement using nano-fluids, pool b...
Pool boiling is an effective heat transfer process in a wide range of applications related to energy...
Pool boiling is an effective heat transfer process in a wide range of applications related to energy...
This thesis investigates the effects of various isotropic and interlaced wettability of surface on p...
This paper deals with a study of enhanced critical heat flux (CHF) and burnout heat flux (BHF) in po...
This paper deals with a study of enhanced critical heat flux (CHF) and burnout heat flux (BHF) in po...
This review traces the development of nanofluid pool boiling from its beginning (1984) to the presen...
This study examined saturated water/alumina nanofluid pool boiling on a 10-mm-diameter, upward-facin...
Nanofluid pool boiling is assessed as a technique for controlled nanoparticle deposition, which can ...
Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Nuclear Science and Engineering, June...
Abstract. The pool boiling characteristics of dilute dispersions of alumina, zirconia and silica nan...
The pool boiling characteristics of dilute dispersions of alumina, zirconia and silica nanoparticles...
The pool boiling critical heat flux (CHF) performance of aqueous nanofluids was investigated using v...
Buildup of a porous layer of nanoparticles on the heated surface occurs upon boiling of nanofluids c...
Enhancements of nucleate boiling critical heat flux (CHF) using nanofluids in a pool boiling are wel...
To investigate the characteristics of CHF (Critical Heat Flux) enhancement using nano-fluids, pool b...
Pool boiling is an effective heat transfer process in a wide range of applications related to energy...
Pool boiling is an effective heat transfer process in a wide range of applications related to energy...
This thesis investigates the effects of various isotropic and interlaced wettability of surface on p...
This paper deals with a study of enhanced critical heat flux (CHF) and burnout heat flux (BHF) in po...
This paper deals with a study of enhanced critical heat flux (CHF) and burnout heat flux (BHF) in po...
This review traces the development of nanofluid pool boiling from its beginning (1984) to the presen...
This study examined saturated water/alumina nanofluid pool boiling on a 10-mm-diameter, upward-facin...
Nanofluid pool boiling is assessed as a technique for controlled nanoparticle deposition, which can ...
Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Nuclear Science and Engineering, June...