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1
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0008883208
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Electrically heated microstructure heat exchangers and reactors
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W. Ehrfeld, editor, Springer
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J. Brandner, M. Fichtner, and K. Schubert. Electrically heated microstructure heat exchangers and reactors. In W. Ehrfeld, editor, Microreaction Technology: Industrial Prospects. IMRET 3: Proc. of the Third Int. Conf. on Microreaction Technology, pages 607-616. Springer, 2000a.
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Microreaction Technology: Industrial Prospects. IMRET 3: Proc. of the Third Int. Conf. on Microreaction Technology
, pp. 607-616
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Brandner, J.1
Fichtner, M.2
Schubert, K.3
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2
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0000109269
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Improving the efficiency of micro heat exchangers and reactors
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R. Irven, editor, New York, NY
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th International Conference on Microreaction Technology, Topical Conference Proceedings, AIChE Spring Nat. Meeting, Atlanta/GA, 2000-03-05/09, pages 244-249, New York, NY, 2000b.
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(2000)
th International Conference on Microreaction Technology, Topical Conference Proceedings, AIChE Spring Nat. Meeting, Atlanta/GA, 2000-03-05/09
, pp. 244-249
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Brandner, J.J.1
Fichtner, M.2
Schygulla, U.3
Schubert, K.4
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4
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2542507459
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Characterisation of electrically powered micro heat exchangers
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accepted for publication
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T. Henning, J. J. Brandner, and K. Schubert. Characterisation of electrically powered micro heat exchangers. accepted for publication, Chemical Engineering Journal, 2004.
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(2004)
Chemical Engineering Journal
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Henning, T.1
Brandner, J.J.2
Schubert, K.3
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5
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2542453044
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Porous media simplified simulation of single and two phase flow heat transfer in micro channel heat exchangers
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accepted for publication
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U. Imke. Porous media simplified simulation of single and two phase flow heat transfer in micro channel heat exchangers. accepted for publication, Chemical Engineering Journal, 2004.
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(2004)
Chemical Engineering Journal
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Imke, U.1
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6
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0036591982
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Fundamental issues related to flow boiling in minichannels and microchannels
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S. G. Kandlikar. Fundamental issues related to flow boiling in minichannels and microchannels. Experimental Thermal and Fluid Science, 26:389-407, 2002a.
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(2002)
Experimental Thermal and Fluid Science
, vol.26
, pp. 389-407
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Kandlikar, S.G.1
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7
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0036092366
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Two-phase flow patterns, pressure drop, and heat transfer during boiling in minichannel flow passages of compact evaporators
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S. G. Kandlikar. Two-phase flow patterns, pressure drop, and heat transfer during boiling in minichannel flow passages of compact evaporators. Heat Transfer Engineering, 23:5-23, 2002b.
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(2002)
Heat Transfer Engineering
, vol.23
, pp. 5-23
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Kandlikar, S.G.1
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8
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1842418414
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Optical studies of boiling heat transfer: Insights and limitations
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article in press
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D. B. R. Kenning. Optical studies of boiling heat transfer: insights and limitations. article in press, International Journal of Heat and Fluid Flow, 2004.
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(2004)
International Journal of Heat and Fluid Flow
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Kenning, D.B.R.1
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9
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0035995255
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High speed visualization of pool boiling from structured tubular heat transfer surfaces
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R. Kulenovic, R. Mertz, and M. Groll. High speed visualization of pool boiling from structured tubular heat transfer surfaces. Experimental Thermal and Fluid Science, 25:547-555, 2002.
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(2002)
Experimental Thermal and Fluid Science
, vol.25
, pp. 547-555
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Kulenovic, R.1
Mertz, R.2
Groll, M.3
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10
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0033679754
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Flow boiling heat transfer in narrow channels
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R. Mertz and M. Groll. Flow boiling heat transfer in narrow channels. Heat and Technology. Calore e Tecnologia, 18 (Supplement n. 1):75-79, 2000.
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(2000)
Heat and Technology. Calore e Tecnologia
, vol.18
, Issue.SUPPL. 1
, pp. 75-79
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Mertz, R.1
Groll, M.2
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11
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17644440794
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Two-phase flow visualization of R134A in a multiport microchannel tube
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V. G. Niño, P. S. Hrnjak, and T. A. Newell. Two-phase flow visualization of R134A in a multiport microchannel tube. Heat Transfer Engineering, 24(1):41-52, 2003.
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(2003)
Heat Transfer Engineering
, vol.24
, Issue.1
, pp. 41-52
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Niño, V.G.1
Hrnjak, P.S.2
Newell, T.A.3
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12
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0035219428
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Microstructure devices for applications in thermal and chemical process engineering
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K. Schubert, J. Brandner, M. Fichtner, G. Linder, U. Schygulla, and A. Wenka. Microstructure devices for applications in thermal and chemical process engineering. Microscale Thermophysical Engineering, 5:17-39, 2001.
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(2001)
Microscale Thermophysical Engineering
, vol.5
, pp. 17-39
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Schubert, K.1
Brandner, J.2
Fichtner, M.3
Linder, G.4
Schygulla, U.5
Wenka, A.6
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15
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1842575593
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Boiling in microchannels: A review of experiment and theory
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article in press
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J. R. Thome. Boiling in microchannels: a review of experiment and theory. article in press, International Journal of Heat and Fluid Flow, 2004.
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(2004)
International Journal of Heat and Fluid Flow
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Thome, J.R.1
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16
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2542431892
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A computer-based simulation of the thermal processes in an electrically powered micro heat exchanger
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ISBN 0-8169-9779-9
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A. Wenka, J. Brandner, and K. Schubert. A computer-based simulation of the thermal processes in an electrically powered micro heat exchanger. In 6th International Conference on Microreaction Technology. AIChE Spring Meeting, 2002-03-10/14, New Orleans, LA/USA, pages 345-350, 2002. ISBN 0-8169-9779-9.
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(2002)
6th International Conference on Microreaction Technology. AIChE Spring Meeting, 2002-03-10/14, New Orleans, LA/USA
, pp. 345-350
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Wenka, A.1
Brandner, J.2
Schubert, K.3
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