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Principles and Prospects of Micro Heat Pipes
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Tsukuba, Japan, May 14-18
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Cotter, T.P.1
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0025471669
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Steady-State Modeling and Testing of a Micro Heat Pipe
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Babin, B.R.1
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Experimental Investigation of Micro Heat Pipes Fabricated in Silicon Wafers
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Thermal Analysis of a Micro Heat Pipe
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Analytical Prediction of the Axial Dryout Point for Evaporating Liquids in Triangular Microgrooves
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Ha, J. M., and Peterson, G. P., 1994, "Analytical Prediction of the Axial Dryout Point for Evaporating Liquids in Triangular Microgrooves," ASME J. Heat Transfer, 116, pp. 498-503.
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Ha, J.M.1
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A One-Dimensional Model of a Micro Heat Pipe During Steady-State Operation
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(1994)
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Longtin, J.P.1
Badran, B.2
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7
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0028468488
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Porous Medium Model For Two Phase Flow in Mini Channels With Application to Micro Heat Pipes
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Wang, C.-Y.1
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8
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0030449420
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Experimental Investigation of the Maximum Heat Transport in Triangular Grooves
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Ma, H. B., and Peterson, G. P., 1996, "Experimental Investigation of the Maximum Heat Transport in Triangular Grooves," ASME J. Heat Transfer, 118, pp. 740-746.
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(1996)
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, vol.118
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Ma, H.B.1
Peterson, G.P.2
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9
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0030480972
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The Interline Heat Transfer of Evaporating Thin Films along a Micro Grooved Surface
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Ha, J. M., and Peterson, G. P., 1996, "The Interline Heat Transfer of Evaporating Thin Films along a Micro Grooved Surface," ASME J. Heat Transfer, [118,] pp. 747-755.
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(1996)
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, vol.118
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Ha, J.M.1
Peterson, G.P.2
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10
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0032004663
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Thermocapillary Effects on the Stability of a Heated, Curved Meniscus
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Pratt, D. M., Brown, J. R., and Hallinan, K. P., 1998, "Thermocapillary Effects on the Stability of a Heated, Curved Meniscus," ASME J. Heat Transfer, 120, pp. 220-226.
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(1998)
ASME J. Heat Transfer
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Pratt, D.M.1
Brown, J.R.2
Hallinan, K.P.3
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11
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2042493493
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The Minimum Meniscus Radius and Capillary Heat Transport Limit in Micro Heat Pipes
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Ma, H. B., and Peterson, G. P., 1998, "The Minimum Meniscus Radius and Capillary Heat Transport Limit in Micro Heat Pipes," ASME J. Heat Transfer, [120,] pp. 227-233.
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(1998)
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Ma, H.B.1
Peterson, G.P.2
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12
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0032148029
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Capillary Performance of Evaporating Flow in Micro Grooves, An Approximate Analytical Approach and Experimental Investigation
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Peterson, G. P., and Ha, J. M., 1998, "Capillary Performance of Evaporating Flow in Micro Grooves, An Approximate Analytical Approach and Experimental Investigation," ASME J. Heat Transfer, 120, pp. 743-751.
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Peterson, G.P.1
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Thermal Analysis of Micro Heat Pipes Using a Porous-Medium Model
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14
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Thermal Analysis of Inclined Micro Heat Pipes
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Sugumar, D., and Tio, K.-K., 2006, "Thermal Analysis of Inclined Micro Heat Pipes," ASME J. Heat Transfer, 128, pp. 198-202.
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(2006)
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, vol.128
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Sugumar, D.1
Tio, K.-K.2
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15
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33645963768
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An Experimental Investigation of a High Heat Flux Heat Pipe Heat Sink
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Ma, H. B., Lofgreen, K. P., and Peterson, G. P., 2006, "An Experimental Investigation of a High Heat Flux Heat Pipe Heat Sink," ASME J. Electron. Packag., 128, pp. 18-22.
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(2006)
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, vol.128
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Ma, H.B.1
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16
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Overview of Micro Heat Pipe Research and Development
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Modeling, Fabrication and Testing of Micro Heat Pipes: An Update
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Micro and Miniature Heat Pipes-Electronic Component Coolers
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Vasiliev, L. L., 2008, "Micro and Miniature Heat Pipes-Electronic Component Coolers," Appl. Therm. Eng., 28, pp. 266-273.
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