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Results 1 to 25 of 1839

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Thermal and hydrodynamic analysis of microchannel heat sinks: A reviewAHMED MOHAMMED ADHAM; MOHD-GHAZALI, Normah; AHMAD, Robiah et al.Renewable & sustainable energy review. 2013, Vol 21, pp 614-622, issn 1364-0321, 9 p.Article

Production of Monodispersed water-in-oil emulsions using polymer microchannelsLIU, Haijie; NAKAJIMA, Mitsutoshi; KIMURA, Toshinori et al.Journal of the American Oil Chemists' Society. 2004, Vol 81, Num 7, pp 705-711, issn 0003-021X, 7 p.Article

Dynamic Sensing of Magnetic Nanoparticles in Microchannel Using GMI TechnologyFODIL, K; DENOUAL, M; DOLABDJIAN, C et al.IEEE transactions on magnetics. 2013, Vol 49, Num 1, pp 93-96, issn 0018-9464, 4 p., 1Conference Paper

Effect of hydrophilicity on electrically driven flow in microchannelsLEE, H. S; KIM, K. H; YU, J. K et al.Colloids and surfaces. A, Physicochemical and engineering aspects. 2007, Vol 311, Num 1-3, pp 77-82, issn 0927-7757, 6 p.Article

Production of monodisperse water-in-oil emulsions consisting of highly uniform droplets using asymmetric straight-through microchannel arraysKOBAYASHI, Isao; MURAYAMA, Yoichi; KUROIWA, Takashi et al.Microfluidics and nanofluidics (Print). 2009, Vol 7, Num 1, pp 107-119, issn 1613-4982, 13 p.Article

Effects of planar inlet plenums on the hydrodynamically developing flows in rectangular microchannels of complementary aspect ratiosLEE, Sang-Youp; JANG, Jaesung; WERELEY, Steven T et al.Microfluidics and nanofluidics (Print). 2008, Vol 5, Num 1, pp 1-12, issn 1613-4982, 12 p.Article

Effect of channel structure on preparation of a water-in-oil emulsion by polymer microchannelsHAIJIE LIU; NAKAJIMA, Mitsutoshi; NISHI, Taiji et al.European journal of lipid science and technology (Print). 2005, Vol 107, Num 7-8, pp 481-487, issn 1438-7697, 7 p.Article

Preparation of monodisperse water-in-oil-in-water emulsions using microfluidization and straight-through microchannel emulsificationKOBAYASHI, Isao; XUEFANG LOU; MUKATAKA, Sukekuni et al.Journal of the American Oil Chemists' Society. 2005, Vol 82, Num 1, pp 65-71, issn 0003-021X, 7 p.Article

Microchannel technology scale-up to commercial capacityTONKOVICH, A; KUHLMANN, D; ROGERS, A et al.Chemical engineering research & design. 2005, Vol 83, Num A6, pp 634-639, issn 0263-8762, 6 p.Conference Paper

Electrokinetically-driven flow mixing in microchannels with wavy surfaceCHEN, Chao-Kuang; CHO, Ching-Chang.Journal of colloid and interface science. 2007, Vol 312, Num 2, pp 470-480, issn 0021-9797, 11 p.Article

Y- and T-junction microfluidic devices: effect of fluids and interface properties and operating conditionsUSHIKUBO, F. Y; BIRRIBILLI, F. S; OLIVEIRA, D. R. B et al.Microfluidics and nanofluidics (Print). 2014, Vol 17, Num 4, pp 711-720, issn 1613-4982, 10 p.Article

Comparison of metal foam and louvered fins as air-side heat transfer enhancement media for miniaturized condensersRIBEIRO, Guilherme B; BARBOSA, Jader R.Applied thermal engineering. 2013, Vol 51, Num 1-2, pp 334-337, issn 1359-4311, 4 p.Article

Effect of Cu―Al2O3 nanocomposite coating on flow boiling performance of a microchannelMORSHED, A. K. M. M; PAUL, Titan C; KHAN, Jamil et al.Applied thermal engineering. 2013, Vol 51, Num 1-2, pp 1135-1143, issn 1359-4311, 9 p.Article

The study of flow characteristics of curved microchannelYANG, Wei-Hua; ZHANG, Jing-Zhou; CHENG, Hui-Er et al.Applied thermal engineering. 2005, Vol 25, Num 13, pp 1894-1907, issn 1359-4311, 14 p.Article

Condensation heat transfer enhancement in a horizontal non-circular microchannelEL MGHARI, Hicham; ASBIK, Mohamed; LOUAHLIA-GUALOUS, Hasna et al.Applied thermal engineering. 2014, Vol 64, Num 1-2, pp 358-370, issn 1359-4311, 13 p.Article

SLIP FLOW IN DOUBLY CONNECTED DUCTSWANG, C. Y.Canadian journal of chemical engineering. 2011, Vol 89, Num 3, pp 469-474, issn 0008-4034, 6 p.Article

Design of Well and Groove Microchannel Bioreactors for Cell CultureKORIN, Natanel; BRANSKY, Avishay; KHOURY, Maria et al.Biotechnology and bioengineering. 2009, Vol 102, Num 4, pp 1222-1230, issn 0006-3592, 9 p.Article

Experimental investigation on silicon microchannel plate electron multiplierDUANMU QINGDUO; WANG GUOZHENG; LI YE et al.Proceedings of SPIE, the International Society for Optical Engineering. 2011, Vol 8194, issn 0277-786X, isbn 978-0-8194-8835-0, 81940G.1-81940G.6, 2Conference Paper

Effect of dispersed phase viscosity on maximum droplet generation frequency in microchannel emulsification using asymmetric straight-through channelsVLADISAVLJEVIC, Goran T; KOBAYASHI, Isao; NAKAJIMA, Mitsutoshi et al.Microfluidics and nanofluidics (Print). 2011, Vol 10, Num 6, pp 1199-1209, issn 1613-4982, 11 p.Article

Straight-through microchannel devices for generating monodisperse emulsion droplets several microns in sizeKOBAYASHI, Isao; TAKANO, Takayuki; MAEDA, Ryutaro et al.Microfluidics and nanofluidics (Print). 2008, Vol 4, Num 3, pp 167-177, issn 1613-4982, 11 p.Article

Gas—surface interaction effects on the flowfield structure of a high speed microchannel flowSEBASTIAO, Israel B; SANTOS, Wilson F. N.Applied thermal engineering. 2013, Vol 52, Num 2, pp 566-575, issn 1359-4311, 10 p.Article

3D features of modified photostructurable glass―ceramic with infrared femtosecond laser pulsesFERNANDEZ-PRADAS, J. M; SERRANO, D; BOSCH, S et al.Applied surface science. 2011, Vol 257, Num 12, pp 5219-5222, issn 0169-4332, 4 p.Conference Paper

Incompressible Laminar Developing Flow in MicrochannelsGALVIS, E; YARUSEVYCH, S; CULHAM, J. R et al.Journal of fluids engineering. 2012, Vol 134, Num 1, issn 0098-2202, 011503.1-011503.4Article

A Venturi microregulator array module for distributed pressure controlCHANG, Dustin S; LANGELIER, Sean M; ZEITOUN, Ramsey I et al.Microfluidics and nanofluidics (Print). 2010, Vol 9, Num 4-5, pp 671-680, issn 1613-4982, 10 p.Article

Precise droplet volume measurement and electrode-based volume metering in digital microfluidicsYUGUANG LIU; BANERJEE, Ananda; PAPAUTSKY, Ian et al.Microfluidics and nanofluidics (Print). 2014, Vol 17, Num 2, pp 295-303, issn 1613-4982, 9 p.Article

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