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Cambridge University Press, Cambridge, UK
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Bejan, A., 2000, Shape and Structure, from Engineering to Nature, Cambridge University Press, Cambridge, UK.
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(2000)
Shape and Structure, from Engineering to Nature
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Bejan, A.1
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2
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0023541367
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On the effect of shape, aspect ratio and orientation upon natural convection from isothermal bodies of complex shape
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Yovanovich, M. M., 1987, "On the Effect of Shape, Aspect Ratio and Orientation upon Natural Convection from Isothermal Bodies of Complex Shape," ASME HTD-Vol. 82, pp. 121-129.
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(1987)
ASME
, vol.HTD-VOL. 82
, pp. 121-129
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-
Yovanovich, M.M.1
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3
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-
0039974848
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General expression for forced convection heat and mass transfer from isopotential spheroids
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AIAA Paper 88-0743
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(1988)
26th AIAA Aerospace Sciences Meeting, Reno, NV, January 11-14
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Yovanovich, M.M.1
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4
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85199293361
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Approximate solution of forced convection heat transfer from isothermal simple body shapes
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AIAA Paper 94-1971
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Refai Ahmed, G., and Yovanovich, M. M., 1994, "Approximate Solution of Forced Convection Heat Transfer from Isothermal Simple Body Shapes," AIAA Paper 94-1971, 6th AIAA/ASME Joint Thermophysics Heat Transfer Conference, Colorado Springs, Colorado, June 20-23.
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(1994)
6th AIAA/ASME Joint Thermophysics Heat Transfer Conference, Colorado Springs, Colorado, June 20-23
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Refai, A.G.1
Yovanovich, M.M.2
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5
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77957099804
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Thermal control of electronic equipment and devices
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6
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0001497449
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Direct air cooling of electronic components
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Moffat, R.J.1
Ortega, A.2
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7
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0001051249
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Forced convective heat transfer from arrays of finned packages
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Nakayama, W., Matsushima, H., and Goel, P., 1988, "Forced Convective Heat Transfer from Arrays of Finned Packages," Cooling Technology for Electronic Equipment, ed., W. Aung, Hemisphere, New York, pp. 195-210.
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Cooling Technology for Electronic Equipment
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Nakayama, W.1
Matsushima, H.2
Goel, P.3
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8
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-
0026995473
-
Algorithm for predicting the thermal resistance of finned LSI packages mounted on a circuit board
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Matsushima, H., Yanagida, T., and Kondo, Y., 1992, "Algorithm for Predicting the Thermal Resistance of Finned LSI Packages Mounted on a Circuit Board," Heat Transfer-Jpn. Res., 21, pp. 504-517.
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Matsushima, H.1
Yanagida, T.2
Kondo, Y.3
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9
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0003166236
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Experimental study of unsteady forced convection in a duct with and without arrays of block-like electronic components
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Li, W., Kakac, S., Hatay, F. F., Oskay, R., 1993, "Experimental Study of Unsteady Forced Convection in a Duct with and without Arrays of Block-Like Electronic Components," Waerme- Stoffuebertrag., 28, pp. 69-79.
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Li, W.1
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10
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0003799392
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Kim, S. J., and Lee, S. W., eds.; CRC Press, Boca Raton, FL
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Kim, S. J., and Lee, S. W., eds., 1996, Air Cooling Technology for Electronic Equipment, CRC Press, Boca Raton, FL.
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(1996)
Air Cooling Technology for Electronic Equipment
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11
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0026858015
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The effect of plate spacing on free convection between heated parallel plates
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Anand, N. K., Kim, S. H., and Fletcher, L. S., 1992, "The Effect of Plate Spacing on Free Convection between Heated Parallel Plates," ASME J. Heat Transfer. 114, pp. 515-518.
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Anand, N.K.1
Kim, S.H.2
Fletcher, L.S.3
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12
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0028519417
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Laminar developing flow and heat transfer between a series of parallel plates with surface mounted discrete heat sources
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Kim, S. H., and Anand, N. K., 1994, "Laminar Developing Flow and Heat Transfer between a Series of Parallel Plates with Surface Mounted Discrete Heat Sources," Int. J. Heat Mass Transf., 37, pp. 2231-2244.
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Kim, S.H.1
Anand, N.K.2
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13
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0027951954
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Turbulent heat transfer between a series of parallel plates with surface-mounted discrete heat sources
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Kim, S. H., and Anand, N. K., 1994, "Turbulent Heat Transfer between a Series of Parallel Plates with Surface-Mounted Discrete Heat Sources," ASME J. Heat Transfer, 116, pp. 577-587.
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(1994)
ASME J. Heat Transfer
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Kim, S.H.1
Anand, N.K.2
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14
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0003765769
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wiley, New York; problem 11
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Bejan, A., 1984, Convection Heat Transfer, wiley, New York, p. 157 problem 11.
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(1984)
Convection Heat Transfer
, pp. 157
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Bejan, A.1
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15
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0021370981
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Thermally optimum spacing of vertical, natural convection cooled, parallel plates
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Bar Cohen, A., and Rohsenow, W. M., 1984, "Thermally Optimum Spacing of Vertical, Natural Convection Cooled, Parallel Plates," ASME J. Heat Transfer, 106, pp. 116-123.
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(1984)
ASME J. Heat Transfer
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Bar Cohen, A.1
Rohsenow, W.M.2
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16
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0031268307
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Optimal geometric arrangement of staggered vertical plates in natural convection
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Ledezma, G. A., and Bejan, A., 1997, "Optimal Geometric Arrangement of Staggered Vertical Plates in Natural Convection," ASME J. Heat Transfer, 119, pp. 700-708.
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(1997)
ASME J. Heat Transfer
, vol.119
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Ledezma, G.A.1
Bejan, A.2
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17
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0029328759
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The optimal spacing between horizontal cylinders in a fixed volume cooled by natural convection
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Bejan, A., Fowler, A. J., and Stanescu, G., 1995. "The Optimal Spacing between Horizontal Cylinders in a Fixed Volume Cooled by Natural Convection," Int. J. Heat Mass Transf., 38, pp. 2047-2055.
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(1995)
Int. J. Heat Mass Transf.
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Bejan, A.1
Fowler, A.J.2
Stanescu, G.3
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18
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0027003957
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The optimal spacing of parallel plates cooled by forced convection
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Bejan, A., and Sciubba, E., 1992, "The Optimal Spacing of Parallel Plates Cooled by Forced Convection," Int. J. Heat Mass Transf., 35, pp. 3259-3264.
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(1992)
Int. J. Heat Mass Transf.
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Bejan, A.1
Sciubba, E.2
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19
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0027676092
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The optimal cooling of a stack of heat generating boards with fixed pressure drop, flow rate or pumping power
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Mereu, S., Sciubba, E., and Bejan, A., 1993, "The Optimal Cooling of a Stack of Heat Generating Boards with Fixed Pressure Drop, Flow Rate or Pumping Power," Int. J. Heat Mass Transf., 36, pp. 3677-3686.
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(1993)
Int. J. Heat Mass Transf.
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Mereu, S.1
Sciubba, E.2
Bejan, A.3
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20
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-
0028425088
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Comments on the optimal spacing of parallel plates cooled by forced convection
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Petrescu, S., 1994, "Comments on the Optimal Spacing of Parallel Plates Cooled by Forced Convection," Int. J. Heat Mass Transf., 37, p. 1283.
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Int. J. Heat Mass Transf.
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Petrescu, S.1
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21
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0024124764
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The formation of a wall jet near a high temperature wall under microgravity environment
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Bhattacharjee, S., and Grosshandler, W. L., 1988, "The Formation of a Wall Jet Near a High Temperature Wall under Microgravity Environment," ASME HTD-Vol. 96, pp. 711-716.
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(1988)
ASME
, vol.HTD-VOL. 96
, pp. 711-716
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Bhattacharjee, S.1
Grosshandler, W.L.2
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22
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0031148617
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Optimal geometric arrangement of staggered plates in forced convection
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Fowler, A. J., Ledezma, G. A., and Bejan, A., 1997, "Optimal Geometric Arrangement of Staggered Plates in Forced Convection," Int. J. Heat Mass Transf., 40, pp. 1795-1805.
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Int. J. Heat Mass Transf.
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Fowler, A.J.1
Ledezma, G.A.2
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23
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0029352991
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The optimal spacings for cylinder in crossflow forced convection
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Bejan, A., 1995, "The Optimal Spacings for Cylinder in Crossflow Forced Convection," ASME J. Heat Transfer, 117, pp. 767-770.
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(1995)
ASME J. Heat Transfer
, vol.117
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Bejan, A.1
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24
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0029757597
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The optimal spacing of cylinders in free-stream cross-flow forced convection
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Stanescu, G., Fowler, A. J., and Bejan, A., 1996, "The Optimal Spacing of Cylinders in Free-Stream Cross-Flow Forced Convection," Int. J. Heat Mass Transf., 39, pp. 311-317.
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Int. J. Heat Mass Transf.
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Stanescu, G.1
Fowler, A.J.2
Bejan, A.3
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25
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0030449351
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Optimal spacing between pin fins with impinging flow
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Ledezma, G., Morega, A. M., and Bejan, A., 1996, "Optimal Spacing between Pin Fins with Impinging Flow," AMSE J. Heat Transfer, 118, pp. 570-577.
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(1996)
AMSE J. Heat Transfer
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Ledezma, G.1
Morega, A.M.2
Bejan, A.3
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26
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0003026378
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Grenzschichten in flüssigkeiten mit kleiner reibung Z
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also NACA TM 1256
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Blasius, H.1
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Der Wärmeaustausch Zwischen Festen Körpern und Flüssigkeiten Mit Kleiner Reibung und Kleiner Wärmeleitung
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Z. Angew. Math. Mech.
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Pohlhausen, E.1
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28
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0346125634
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On the longitudinal dispersion of passive contaminant in oscillatory flows in tubes
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Chatwin, P. C., 1975, "On the Longitudinal Dispersion of Passive Contaminant in Oscillatory Flows in Tubes," J. Fluid Mech., 71, pp. 513-527.
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Chatwin, P.C.1
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0020804737
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Diffusion in oscillatory pipe flow
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Watson, E.J.1
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0021521210
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Heat transfer by high-frequency oscillations: A new hydrodynamic technique for achieving large effective thermal conductivities
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Kurzweg, U. H., and Zhao, L. D., 1984, "Heat Transfer by High-Frequency Oscillations: a New Hydrodynamic Technique for Achieving Large Effective Thermal Conductivities," Phys. Fluids, 27, pp. 2624-2627.
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0035297538
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Geometric optimization of periodic flow and heat transfer in a volume cooled by parallel tubes
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Rocha, L. A. O., and Bejan, A., 2001, "Geometric Optimization of Periodic Flow and Heat Transfer in a Volume Cooled by Parallel Tubes," ASME J. Heat Transfer, 123, pp. 233-239.
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ASME J. Heat Transfer
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Rocha, L.A.O.1
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0001849039
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The mechanisms and energetics of honeybee swarm temperature regulation
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Heinrich, B., 1981, "The Mechanisms and Energetics of Honeybee Swarm Temperature Regulation," J. Exp. Biol., 91, pp. 25-55.
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A model for heat transfer in a honey bee swarm
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Basak, T., Rao, K. K., and Bejan, A., 1996, "A Model for Heat Transfer in a Honey Bee Swarm," Chem. Eng. Sci., 51, pp. 387-400.
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Basak, T.1
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Theory of natural crack pattern formation for fastest cooling
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Bejan, A., Ikegami, Y., and Ledezma, G. A., 1988, "Theory of Natural Crack Pattern Formation for Fastest Cooling," Int. J. Heat Mass Transf., 41, pp. 1945-1954.
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Bejan, A.1
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