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Drastic enhancement of effective thermal conductivity of a metal hydride packed bed by direct synthesis of single-walled carbon nanotubesINOUE, Shuhei; IBA, Yushi; MATSUMURA, Yukihiko et al.International journal of hydrogen energy. 2012, Vol 37, Num 2, pp 1836-1841, issn 0360-3199, 6 p.Article

Constructal theory through thermodynamics of irreversible processes frameworkTESCARI, S; MAZET, N; NEVEU, P et al.Energy conversion and management. 2011, Vol 52, Num 10, pp 3176-3188, issn 0196-8904, 13 p.Article

Predicting the effective thermal conductivity of unfrozen, porous foodsCARSON, James K; LOVATT, Simon J; TANNER, David J et al.Journal of food engineering. 2006, Vol 75, Num 3, pp 297-307, issn 0260-8774, 11 p.Article

Effective properties of fiber-reinforced materials. I: Bounds on the effective thermal conductivity of dispersions of fully penetrable cylindersTORQUATO, S; BEASLEY, J. D.International journal of engineering science. 1986, Vol 24, Num 3, pp 415-433, issn 0020-7225Article

On the evaporation of superheated water drops formed by flashing of liquid jetsMUTAIR, Sami; IKEGAMI, Yasuyuki.International journal of thermal sciences. 2012, Vol 57, pp 37-44, issn 1290-0729, 8 p.Article

On the area to point flow problem based on constructal theoryWENJUN WU; LINGEN CHEN; FENGRUI SUN et al.Energy conversion and management. 2007, Vol 48, Num 1, pp 101-105, issn 0196-8904, 5 p.Article

A Thermal Conductivity Model for Nanofluids Heat Transfer EnhancementAZARI, A; KALBASI, M; MOAZZENI, A et al.Petroleum science and technology. 2014, Vol 32, Num 1-4, pp 91-99, issn 1091-6466, 9 p.Article

Thermal wave effects on heat transfer enhancement in nanofluids suspensionsVADASZ, Johnathan J; GOVENDER, Saneshan.International journal of thermal sciences. 2010, Vol 49, Num 2, pp 235-242, issn 1290-0729, 8 p.Article

Determination of effective thermal conductivity from geometrical properties: Application to open cell foamsKUMAR, Prashant; TOPIN, Frederic; VICENTE, Jerome et al.International journal of thermal sciences. 2014, Num 81, pp 13-28, issn 1290-0729, 16 p.Article

The experimental study of natural convection within the space of a bundle of rectangular sectionsWYCZOLKOWSKI, Rafał; MUSIAL, Dorota.Experimental thermal and fluid science. 2013, Vol 51, pp 122-134, issn 0894-1777, 13 p.Article

Constructal Design of Particle Volume Fraction in NanofluidsCHAO BAI; LIQIU WANG.Journal of heat transfer. 2009, Vol 131, Num 11, issn 0022-1481, 112402.1-112402.7Article

A new approach to modelling the effective thermal conductivity of heterogeneous materialsJIANFENG WANG; CARSON, James K; NORTH, Mike F et al.International journal of heat and mass transfer. 2006, Vol 49, Num 17-18, pp 3075-3083, issn 0017-9310, 9 p.Article

The rate of heat conduction from a heated sphere to a packed bed of passive spheresCHANG, E. Y; ACRIVOS, A.Chemical engineering communications (Print). 1987, Vol 58, Num 1-6, pp 165-170, issn 0098-6445Article

Effect of spacers on the thermal performance of an annular multi-layer insulationHAIM, Y; WEISS, Y; LETAN, R et al.Applied thermal engineering. 2014, Vol 65, Num 1-2, pp 418-421, issn 1359-4311, 4 p.Article

Estimation of the thermal conductivity of compositesERVIN, V. J; KLETT, J. W; MUNDT, C. M et al.Journal of materials science. 1999, Vol 34, Num 14, pp 3545-3553, issn 0022-2461Article

prediction and measurement of effective thermal conductivity of three-phase systemsVERMA, L. S; SHROTRIYA, A. K; SINGH, R et al.Journal of physics. D, Applied physics (Print). 1991, Vol 24, Num 9, pp 1515-1526, issn 0022-3727Article

A combined model for the effective thermal conductivity of nanofluidsMURSHED, S. M. S; LEONG, K. C; YANG, C et al.Applied thermal engineering. 2009, Vol 29, Num 11-12, pp 2477-2483, issn 1359-4311, 7 p.Article

Review of convective heat transfer enhancement with nanofluidsKAKAC, Sadik; PRAMUANJAROENKIJ, Anchasa.International journal of heat and mass transfer. 2009, Vol 52, Num 13-14, pp 3187-3196, issn 0017-9310, 10 p.Article

Determination of effective thermal conductivity for fibrous non-linear compositesKOLODZIEJ, J. A; KONCZAK, Z.Zeitschrift für angewandte Mathematik und Mechanik. 1998, Vol 78, pp S547-S548, issn 0044-2267, SUP2Conference Paper

Effective thermal conductivity of a matrix with two kinds of inclusionsKLEMENS, P. G.International journal of thermophysics. 1996, Vol 17, Num 4, pp 979-981, issn 0195-928XArticle

Ermittlung der effektiven Wärmeleitfähigkeit keramischer Werkstoffe = Determination of the effective thermal conductivity of ceramic materialsSCHULLE, W.Keramische Zeitschrift. 1994, Vol 46, Num 12, pp 948-954, issn 0023-0561, 5 p.Article

A theoretical model for the estimation of the effective thermal conductivity of a packed bed of fine particlesHAYASHI, S; KUBOTA, K; MASAKI, H et al.Chemical engineering journal. 1987, Vol 85, Num 1, pp 51-60, issn 0300-9467Article

The length effect on packed bed effective heat transfer parametersDIXON, A. G.Chemical engineering journal. 1985, Vol 31, Num 2, pp 163-173, issn 0300-9467Article

An ideal nano-porous insulation material: Design, modeling and numerical validationLI, Yun-Han; LI, Zeng-Yao; TAO, Wen-Quan et al.Applied thermal engineering. 2014, Vol 72, Num 1, pp 34-40, issn 1359-4311, 7 p.Conference Paper

The effective thermal conductivity of high temperature particulate beds. I: Experimental determinationBOTTERILL, J. S. M; SALWAY, A. G; TEOMAN, Y et al.International journal of heat and mass transfer. 1989, Vol 32, Num 3, pp 585-593, issn 0017-9310Article

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