Heat transfer engineering an international journal, tập 31, số 6, 2010

Heat Transfer Engineering Applications Part 1 ppt

Heat Transfer Engineering Applications Part 1 ppt
... (p-cladding) 1. 5 11 .4 402 4384 GaAs (cap) 0.2 44 327 5 318 p-contact 318 12 8 19 300 In (solder) 82 230 7 310 heat source yes - equation (11 ) no yes - equation (11 ) yes - equation (9) yes - equation (11 ) yes ... substrate 10 0 44 327 5 318 Al0.6 Ga0.4 As (n-cladding) 1. 5 11 .4 402 4384 Al0.4 Ga0.6 As (waveguide) 0.35 11 .1 378 4696 active layer 0.007 44 327 5 318 Al0.4 Ga0.6 As (waveguide) 0.59 11 .1 378 4696 ... elude Heat Transfer - Engineering Applications Will-be-set-by-IN-TECH Device number Heterostructure A Heterostructure B Heterostructure C 12 .03/7.38 11 .23/7. 31 8.9/8.24 13 .35/7.38 12 .17 /7. 31 7.0/4.76...
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Heat Transfer Engineering Applications Part 2 pptx

Heat Transfer Engineering Applications Part 2 pptx
... Phys Stat Solidi (a) Vol 20 2, No 7, (May 20 05) 122 7- 123 2 Yang B and Chen G (20 03) Partially coherent phonon heat conduction in superlattices, Phys Rev B, Vol 67, No 19, (May 20 03) 195311-1-195311-4 ... Proc SPIE Vol 55 82, (September 20 04) 127 -133 28 26 Heat Transfer - Engineering Applications Will-be-set-by-IN-TECH Szymanski M (20 07) Two-dimensional model of heat flow in broad-area laser diode: ... −1 = ⊥ d1 d2 ni (av) r + r + r , d1 + d2 d1 + d2 d1 + d2 Bd (21 ) where TBR has been averaged with respect to the direction of the heat flow (av) rBd = rBd (1 → 2) + rBd (2 → 1) (22 ) (av) ´ The...
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Heat Transfer Engineering Applications Part 3 pptx

Heat Transfer Engineering Applications Part 3 pptx
...  (ns) Gallium Gallium silicon silicon arsenide arsenide 30 1660 9 73 6.8 12.8 30 1660 9 73 5.5 4.8 192 30 1660 9 73 5.6 10.8 1060 7 43 435 1000 N/A Table The thermal and optical penetration into ... using a a pulsed laser, Optics and Laser Technology, Vol 32 , No 3, (April, 2000), pp (157-164), ISSN 0 030 -39 92 68 Heat Transfer Engineering Applications Howari, H., Sands, D., Nicholls, J E., Hogg, ... Technology, Vol 33 , No 8, (November, 2001), pp ( 539 -551), ISSN 0 030 -39 92 von Allmen, Martin & Blatter, Andreas (1995) Laser Beam Interactions with Materials: physical principles and applications, ...
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Heat Transfer Engineering Applications Part 4 potx

Heat Transfer Engineering Applications Part 4 potx
... shaped embedded Au nanoparticles, Applied Physics Letters 94( 11): 113107 URL: http://link.aip.org/link/APPLAB/v 94/ i11/p113107/s1&Agg=doi 84 14 Heat Transfer - Engineering Applications Will-be-set-by-IN-TECH ... http://www.informaworld.com/openurl?genre=article&doi=10.1080/1 042 015070 147 2 221&magic=crossref||D404A21C5BB05 340 5B1A 640 AFFD44AE3 Lin, Z & Zhigilei, L (2007) Temperature dependences of the electron-phonon coupling, electron heat capacity and ... and Defects in Solids 29 (4) : 245248 URL: http://www.informaworld.com/openurl?genre=article&doi=10.1080/00337577608233 050&magic=crossref||D404A21C5BB05 340 5B1A 640 AFFD44AE3 Waligórski, M P R.,...
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Heat Transfer Engineering Applications Part 5 pot

Heat Transfer Engineering Applications Part 5 pot
... fibers – θ = [0 ± < 45/ 0>] 2S [0 ± ] 2S [0 ± < 75/ 0>/90 ± < 75/ 0>]S Normalized heat flux 0. 05 0.1 0. 15 0.2 0. 25 0.3 Longitudinal direction, x / Lx 0. 35 0.4 0. 45 0 .5 Fig Heat Flux along longitudinal ... fibers – θ = [0 ± < 45/ 0>] 2S [0 ± ] 2S [0 ± < 75/ 0>/90 ± < 75/ 0>]S Normalized heat flux 0 0. 05 0.1 0. 15 0.2 0. 25 0.3 Transverse direction, y / Ly 0. 35 0.4 0. 45 0 .5 Fig 10 Heat Flux along transverse ... 40 0 350 450 (a) 55 0 Т, К 300 350 400 450 Т, К (b) Fig 15 Etch rate vs wafer temperature for (a) plasma etching or (b) reactive ion etching in a CF4–O2 plasma at discharge currents of (1) 50 , (2)...
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Heat Transfer Engineering Applications Part 6 ppt

Heat Transfer Engineering Applications Part 6 ppt
... conducted 154 Heat Transfer Engineering Applications Counter heater Thermocouple Steel plate Φ74 .6 Rubber thermocouples Wood Plate a Rubber Thermocouple 120 Sheathed heater A B c d Mold 74 .6 60 Thermal ... analysis 166 Heat Transfer Engineering Applications Heating wall Temperature T (℃) 150 r mm 10 20 30 35 100 50 Measured Tw Predicted TR 0 60 120 180 Elapsed time (min) Degree of cure  Heat ... 150 Heating wall 100 r (mm) 10 20 30 35 50 Heater Off 0 60 120 Elapsed time  (min) Fig 10 Profile of rubber temperature for SBR with 1wt% sulfur, Method B 164 Heat Transfer Engineering Applications...
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Heat Transfer Engineering Applications Part 7 pot

Heat Transfer Engineering Applications Part 7 pot
... m, um=1 m·s-1) 178 Heat Transfer Engineering Applications 3.2 Analytical modeling 3.2.1 Metallic foam fully filled duct In this part, fully developed forced convective heat transfer in a parallel-plate ... specific surface 182 Heat Transfer Engineering Applications area caused by increasing porosity to create higher heat transfer temperature difference under the same heat transfer rate Figure ... 170 Heat Transfer Engineering Applications butylbenzothiazole-sulfenamide, Journal of Applied Polymer Science, Vol.103, pp.2933 07 ISSN=0021-8995 Likozar, B and Krajnc, M (2008) A Study of Heat...
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Heat Transfer Engineering Applications Part 8 pot

Heat Transfer Engineering Applications Part 8 pot
... Journal of Heat and Mass Transfer, Vol.45, No. 18, (August 2002), pp 3 781 –3793, ISSN 0017-9310 204 Heat Transfer Engineering Applications Popiel, C.O & Boguslawski, L (1975) Heat transfer by ... with Uniform Suction Velocity Journal of Heat Transfer, Vol 86 , (1964), pp 481 - 489 , ISSN 0022-1 481 Jamin Y.L & Mohamad A.A (20 08) Natural Convection Heat Transfer Enhancements From a Cylinder Using ... Copper wire screen PVC outer sheath Soil Thermal Conductivity k (W/K.m) 400 1/3.5 400 0.1 Thermal Capacity c (J/kg.K) 385 385 385 385 89 0 Density  (kg/m3) 87 00 1 380 87 00 1760 1600 Table Thermal...
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Heat Transfer Engineering Applications Part 9 docx

Heat Transfer Engineering Applications Part 9 docx
... B.J., Zhu, J ( 199 9) Contact Surface Temperature Model for Disc Brake in Braking J Xian Inst Tech., Vol 19, No 1, ( 199 9), pp 35- 39 (In Chinese) Ma, B.J., Zhu, J ( 199 8) The Dynamic Heat Flux Model ... (2002), pp 193 - 199 Yevtushenko, A.A., Ivanyk, E.G ( 199 7) Determination of temperatures for sliding contact with applications for braking systems Wear Vol 206, No 1-2, ( 199 7), pp 53- 59 Heat Conduction ... 3 T   10 5 T  1.026  10 7 T , r0  0 .97 2   T  30.1  (T )  0.132  0.0832  e  148.7 49 ,r  0 .99 8  (5) 236 Heat Transfer Engineering Applications for lining K, C p (T )  1.272...
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Heat Transfer Engineering Applications Part 10 potx

Heat Transfer Engineering Applications Part 10 potx
... Surfaces Heated Convectively Fig 13 Location of the analysed platen superheater and three stages of convective steam superheater (KPP-1, KPP-2, and KPP-3) 279 280 Heat Transfer Engineering Applications ... steam temperature at the superheater inlet (b) 278 Heat Transfer Engineering Applications Fig 12 History of the computed combustion gases temperature at the superheater outlet When comparing ... imposes a significant additional influence to the system heat transfer, which cannot (and should not) 284 Heat Transfer Engineering Applications be neglected during the engine design stage...
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Heat Transfer Engineering Applications Part 11 pptx

Heat Transfer Engineering Applications Part 11 pptx
... due to the transfer of heat to the cylinder and manifold walls along the 100 mm distance from the exhaust valve to the point of measurement 302 Heat Transfer Engineering Applications Heat Flux ... 290 Heat Transfer Engineering Applications As observed any unsteady engine heat transfer phenomenon belongs in either of the following two ... inside the metal volume (b) and heat flux variation for cylinder head (c), for the first sec of transient variation “4” 304 Heat Transfer Engineering Applications Heat Flux (kW/m2) 300 250 200...
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Heat Transfer Engineering Applications Part 12 docx

Heat Transfer Engineering Applications Part 12 docx
... flow heat transfer assembly to thermal modules has become mature and heat pipe-based two-phase flow heat transfer module is one of the best choices (Wang, 2008) A heat sink with embedded heat ... copper and aluminum heat spreaders, proving that it can effectively reduce the temperature of heat sources The maximum heat flux of the vapor 344 Heat Transfer Engineering Applications chamber ... cooling of the electronic components The heat capacity 348 Heat Transfer Engineering Applications transfers to the working fluid through the chamber for heat dissipation The driving force can...
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Heat Transfer Engineering Applications Part 13 pdf

Heat Transfer Engineering Applications Part 13 pdf
... interface, as shown in equation (13) below 352 Heat Transfer Engineering Applications 300     i  0.005   D     G2  x2           (1  )    v D   (13)    d  mvVv  mwVw ... Thermal Performance of a Heat Sink with Embedded Heat Pipes Journal of the Chinese Society of Mechanical Engineers, Vol 31, Issue 1, pp.2128 366 Heat Transfer Engineering Applications Wang, J.-C ... vapour chamber-based plate 362 Heat Transfer Engineering Applications Fig 11 shows the temperature distributions of 12 pieces of LED up to 30Watt AL die-casting heat sink with asymmetry radial...
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Heat Transfer Engineering Applications Part 14 pptx

Heat Transfer Engineering Applications Part 14 pptx
... the horizontal heat transfer path has for up to 30% of CPU chip heat transfer (Stan et al., 2006) The TSC is a big coldspot within the CPU area that handles the horizontal heat transfer path The ... spot with relative big area that helps exhausting the horizontal heat transfer path out of the chip 384 Heat Transfer Engineering Applications A- Core thermal throttling “upper” curve (Ferreira ... view; the horizontal heat transfer path has up to 30% of CPU chip heat transfer (Stan et al., 2006) The TSC is a big coldspot within the CPU area that handles the horizontal heat transfer path The...
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