-
1
-
-
0001435905
-
Anomalously increased effective thermal conductivities of ethylene glycol-based nanofluids containing copper nanoparticles
-
Eastman J.A., Choi S.U.S., Li S., Yu W., and Thompson L.J. Anomalously increased effective thermal conductivities of ethylene glycol-based nanofluids containing copper nanoparticles. Appl. Phys. Lett. 78 (2001) 718-720
-
(2001)
Appl. Phys. Lett.
, vol.78
, pp. 718-720
-
-
Eastman, J.A.1
Choi, S.U.S.2
Li, S.3
Yu, W.4
Thompson, L.J.5
-
2
-
-
0034069053
-
Heat transfer enhancement of nanofluids
-
Xuan Y., and Li Q. Heat transfer enhancement of nanofluids. Int. J. Heat Fluid Flow 21 (2000) 58-64
-
(2000)
Int. J. Heat Fluid Flow
, vol.21
, pp. 58-64
-
-
Xuan, Y.1
Li, Q.2
-
3
-
-
2442499447
-
Heat transfer enhancement of copper nanofluid with acoustic cavitation
-
Zhou D.W. Heat transfer enhancement of copper nanofluid with acoustic cavitation. Int. J. Heat Mass Transfer 47 (2004) 3109-3117
-
(2004)
Int. J. Heat Mass Transfer
, vol.47
, pp. 3109-3117
-
-
Zhou, D.W.1
-
4
-
-
0042418742
-
Temperature dependence of thermal conductivity enhancement for nanofluids
-
Das S.K., Putra N., Thiesen P., and Roetzel W. Temperature dependence of thermal conductivity enhancement for nanofluids. J. Heat Transfer 125 (2003) 567-574
-
(2003)
J. Heat Transfer
, vol.125
, pp. 567-574
-
-
Das, S.K.1
Putra, N.2
Thiesen, P.3
Roetzel, W.4
-
5
-
-
0242582398
-
Thermal conductivity of heterogeneous two-component systems
-
Hamilton R.L., and Crosser O.K. Thermal conductivity of heterogeneous two-component systems. I & EC Fundamentals 1 (1962) 182-191
-
(1962)
I & EC Fundamentals
, vol.1
, pp. 182-191
-
-
Hamilton, R.L.1
Crosser, O.K.2
-
7
-
-
0003350952
-
Colours in metal glasses and in metallic films
-
Maxwell-Garnett J.C. Colours in metal glasses and in metallic films. Philos. Trans. Roy. Soc. A 203 (1904) 385-420
-
(1904)
Philos. Trans. Roy. Soc. A
, vol.203
, pp. 385-420
-
-
Maxwell-Garnett, J.C.1
-
8
-
-
84980703555
-
Berechnung Verschiedener Physikalischer Konstanten von Heterogenen Substanzen, I. Dielektrizitatskonstanten und Leitfahigkeiten der Mischkorper aus Isotropen Substanzen
-
Bruggeman D.A.G. Berechnung Verschiedener Physikalischer Konstanten von Heterogenen Substanzen, I. Dielektrizitatskonstanten und Leitfahigkeiten der Mischkorper aus Isotropen Substanzen. Ann. Physik Leipzig 24 (1935) 636-679
-
(1935)
Ann. Physik Leipzig
, vol.24
, pp. 636-679
-
-
Bruggeman, D.A.G.1
-
9
-
-
0037570726
-
A fractal model for predicting the effective thermal conductivity of liquid with suspension of nanoparticles
-
Wang B.X., Zhou L.P., and Peng X.F. A fractal model for predicting the effective thermal conductivity of liquid with suspension of nanoparticles. Int. J. Heat Mass Transfer 46 (2003) 2665-2672
-
(2003)
Int. J. Heat Mass Transfer
, vol.46
, pp. 2665-2672
-
-
Wang, B.X.1
Zhou, L.P.2
Peng, X.F.3
-
10
-
-
18844430431
-
Model for conduction in nanofluids
-
144301-1-144301-3
-
Kumar D.H., Patel H.E., Kumar V.R.R., Sundararajan T., Pradeep T., and Das S.K. Model for conduction in nanofluids. Phys. Rev. Lett. 93 (2004) 144301-1-144301-3
-
(2004)
Phys. Rev. Lett.
, vol.93
-
-
Kumar, D.H.1
Patel, H.E.2
Kumar, V.R.R.3
Sundararajan, T.4
Pradeep, T.5
Das, S.K.6
-
11
-
-
30844452941
-
A micro-convection model for thermal conductivity of nanofluid
-
Patel H.E., Sundarrajan T., Pradeep T., Dasgupta A., Dasgupta N., and Das S.K. A micro-convection model for thermal conductivity of nanofluid. Pramana J. Phys. 65 (2005) 863-869
-
(2005)
Pramana J. Phys.
, vol.65
, pp. 863-869
-
-
Patel, H.E.1
Sundarrajan, T.2
Pradeep, T.3
Dasgupta, A.4
Dasgupta, N.5
Das, S.K.6
-
13
-
-
33646734940
-
Natural convective heat transfer of suspensions of titanium dioxide nanoparticles (nanofluids)
-
Wen D., and Ding Y. Natural convective heat transfer of suspensions of titanium dioxide nanoparticles (nanofluids). IEEE Trans. Nanotechnol. 5 (2006) 220-227
-
(2006)
IEEE Trans. Nanotechnol.
, vol.5
, pp. 220-227
-
-
Wen, D.1
Ding, Y.2
-
14
-
-
24744471387
-
Rheology of CuO nanoparticle suspension prepared by ASNSS
-
Chang H., Jwo C.S., Lo C.H., Tsung T.T., Kao M.J., and Lin H.M. Rheology of CuO nanoparticle suspension prepared by ASNSS. Rev. Adv. Material Sci. 10 (2005) 128-132
-
(2005)
Rev. Adv. Material Sci.
, vol.10
, pp. 128-132
-
-
Chang, H.1
Jwo, C.S.2
Lo, C.H.3
Tsung, T.T.4
Kao, M.J.5
Lin, H.M.6
-
15
-
-
45949094849
-
Study of heat transfer augmentation in a differentially heated square cavity using Copper-water nanofluid
-
Santra A.K., Sen S., and Chakraborty N. Study of heat transfer augmentation in a differentially heated square cavity using Copper-water nanofluid. Int. J. Thermal Sci. 47 (2008) 1113-1122
-
(2008)
Int. J. Thermal Sci.
, vol.47
, pp. 1113-1122
-
-
Santra, A.K.1
Sen, S.2
Chakraborty, N.3
-
17
-
-
0004063090
-
-
Addison Wesley Longman Pte. Ltd., Singapore
-
Haykin S. Neural Networks (2001), Addison Wesley Longman Pte. Ltd., Singapore
-
(2001)
Neural Networks
-
-
Haykin, S.1
-
18
-
-
28244439879
-
Artificial neural network analysis of a refrigeration system with an evaporative condenser
-
Ertunc H.M., and Hosoz M. Artificial neural network analysis of a refrigeration system with an evaporative condenser. Appl. Therm. Engrg. 26 (2006) 627-635
-
(2006)
Appl. Therm. Engrg.
, vol.26
, pp. 627-635
-
-
Ertunc, H.M.1
Hosoz, M.2
-
20
-
-
29244491457
-
Application of artificial neural network to predict specific fuel consumption and exhaust temperature for a diesel engine
-
Parlak A., Islamoglu Y., Yasar H., and Egrisogut A. Application of artificial neural network to predict specific fuel consumption and exhaust temperature for a diesel engine. Appl. Therm. Engrg. 26 (2006) 824-828
-
(2006)
Appl. Therm. Engrg.
, vol.26
, pp. 824-828
-
-
Parlak, A.1
Islamoglu, Y.2
Yasar, H.3
Egrisogut, A.4
-
21
-
-
4544286829
-
Performance comparison of CfCs with their substitutes using artificial neural network
-
Arcaklioglu E. Performance comparison of CfCs with their substitutes using artificial neural network. Int. J. Energy Res. 28 (2004) 1113-1125
-
(2004)
Int. J. Energy Res.
, vol.28
, pp. 1113-1125
-
-
Arcaklioglu, E.1
-
23
-
-
84943274699
-
A direct adaptive method for faster back propagation algorithm learning: The RPROP algorithm
-
San Francisco
-
M. Riedmiller, H. Braun, A direct adaptive method for faster back propagation algorithm learning: The RPROP algorithm, in: Proc. on IEEE Int. Conf. on Neural Networks (ICNN), San Francisco, 1993
-
(1993)
Proc. on IEEE Int. Conf. on Neural Networks (ICNN)
-
-
Riedmiller, M.1
Braun, H.2
-
24
-
-
0004109478
-
RPROP - Description and Implementation Details
-
Technical Report, University of Karlsruhe, January
-
M. Riedmiller, RPROP - Description and Implementation Details, Technical Report, University of Karlsruhe, January 1994
-
(1994)
-
-
Riedmiller, M.1
-
26
-
-
10444275587
-
Non-iterative estimation of heat transfer coefficients using artificial neural network models
-
Sablani S.S., Kacimov A., Perret J., Mujumdar A.S., and Campo A. Non-iterative estimation of heat transfer coefficients using artificial neural network models. Int. J. Heat Mass Transfer 48 (2005) 665-679
-
(2005)
Int. J. Heat Mass Transfer
, vol.48
, pp. 665-679
-
-
Sablani, S.S.1
Kacimov, A.2
Perret, J.3
Mujumdar, A.S.4
Campo, A.5
|