References
- M.M. Sarafraz, F. Hormozi, Comparatively experimental study
on the boiling thermal performance of metal oxide and multiwalled
carbon nanotube nanofluids, Powder Technol., 287
(2016) 412–430.
- M.M. Sarafraz, Nucleate pool boiling of aqueous solution
of citric acid on a smoothed horizontal cylinder, Heat Mass
Transfer, 48 (2012) 611–619.
- E. Salari, S.M. Peyghambarzadeh, M.M. Sarafraz, F. Hormozi, Boiling
thermal performance of TiO2 aqueous nanofluids as a coolant on a
disc copper block, Period. Polytech. Chem. Eng., 60 (2016) 106–122.
- M.M. Sarafraz, S.M. Peyghambarzadeh, S.A. Alavifazel,
Enhancement of nucleate pool boiling heat transfer to dilute
binary mixtures using endothermic chemical reactions around
the smoothed horizontal cylinder, Heat Mass Transfer, 48 (2012)
1755–1765.
- S.K. Das, N. Putra, W. Roetzel, Pool boiling of nanofluids on
horizontal narrow tubes, Int. J. Multiphase Flow, 29 (2003) 1237–1247.
- M. Kamalgharibi, F. Hormozi, S.A.H. Zamzamian, M.M. Sarafraz,
Experimental studies on the stability of CuO nanoparticles
dispersed in different base fluids: influence of stirring, sonification
and surface active agents, Heat Mass Transfer, 52 (2016) 55–62.
- M.M. Sarafraz, A. Arya, H. Nikkhah, On the convective thermal
performance of a CPU cooler working with liquid gallium and
CuO/water nanofluid: a comparative study, Appl. Therm. Eng.,
112 (2017) 1373–1381.
- F.I. El-Hosiny, N.A. El-Faramawy, Shielding of gamma radiation
by hydrated Portland cement-lead pastes, Radiat. Meas., 32
(2000) 93–99.
- A.M. El-Khayatt, Radiation shielding of concretes containing
different lime/silica ratios, Ann. Nucl. Energy, 37 (2010), 991–995.
- M.H. Kharita, M. Takeyeddin, M. Alnassar, S. Yousef,
Development of special radiation shielding concretes using
natural local materials and evaluation of their shielding
characteristics, Progr. Nucl. Energy, 50 (2008) 33–36.
- H.S. Armelin, N. Cherry, Evaluation of the use and performance
of thermal radiation barriers in construction, E-magazine Mat.,
1 (2004) 79–82.
- S.M. Bajorek, J.R. Lloyd, Experimental investigation of natural
convection in partitioned enclosures, J. Heat Transfer, 104 (2009)
527–531.
- M. Ciofalo, T.G. Karayiannis, Natural convection heat transfer
in a partially—or completely—partitioned vertical rectangular
enclosure, Int. J. Heat Mass Transfer, 34 (1991) 167–179.
- S.P. Jesumathy, M. Udayakumar, S. Suresh, Heat transfer
characteristics in latent heat storage system using paraffin wax,
J. Mech. Sci. Technol., 26 (2012) 959–965.
- S. Lorente, Heat losses through building walls with closed, open
and deformable cavities, Int. J. Energy Res., 26 (2002) 611–632.
- H. Manz, Numerical simulation of heat transfer by natural
convection in cavities of facade elements, Energy Buildings, 35
(2003) 305–311.
- I. Akkurt, H. Akyildirim, B. Mavi, Ş. Kilincarslan, C. Basyigit,
Gamma-ray shielding properties of concrete including barite at
different energies, Progr. Nucl. Energy, 52 (2010) 620–623.
- I. Akkurt, C. Basyigit, S. Kilincarslan, B. Mavi, The shielding of
γ-rays by concretes produced with barite, Progr. Nucl. Energy,
46 (2005) 1–11.
- S.M. Bajorek, J.R. Lloyd, Experimental investigation of natural
convection in partitioned enclosures, J. Heat Transfer, 104 (2008)
527–531.
- C. Başyiğit, B. Comak, S. Kilincarslan, Assessment of concrete
compressive strength by image processing technique, Construct.
Build. Mater., 37 (2012) 526–532.
- C.A.N. Dare, L.A. Targa, M. Isa, Evaluating the effectiveness
of thermal insulation by reflection, used as under-coverage,
Energy Agric. Botucatu, 20 (2005) 14–29.
- J.G.A. De Graff, E.F.M. van der Held, The relation between the
heat transfer and the convection phenomena in enclosed plane
air layers, Appl. Sci. Res., 3 (1952) 393–409.
- J.J. del Coz Díaz, P.J. Garcia Nieto, C. Betegon Biempica, M.P.
Prendes Gero, Analysis and optimization of the heat-insulating
light concrete hollow brick walls design by the finite element
method, Appl. Therm. Eng., 27 (2007) 1445–1456.
- W. Yu, D.M. France, E.V. Timofeeva, D. Singh, J.L. Routbort,
Thermophysical property-related comparison criteria for
nanofluid heat transfer enhancement in turbulent flow, Appl.
Phys., 96 (2010) 213109.