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Advances in Transport Phenomena 2010 by Zhi-Xin Li, Zeng-Yuan Guo (auth.), Liqiu Wang (eds.)

By Zhi-Xin Li, Zeng-Yuan Guo (auth.), Liqiu Wang (eds.)

The time period transport phenomena is used to explain techniques within which mass, momentum, strength and entropy movement approximately in subject. Advances in shipping Phenomena provide cutting-edge expositions of significant advances via theoretical, numerical and experimental experiences from a molecular, microscopic, mesoscopic, macroscopic or megascopic viewpoint around the spectrum of delivery phenomena, from medical enquiries to useful functions. the yearly evaluate sequence intends to fill the knowledge hole among usually released journals and university-level textbooks by means of delivering in-depth evaluate articles over a broader scope than in journals. The authoritative articles, contributed via internationally-leading scientists and practitioners, identify the state-of-the-art, disseminate the most recent examine discoveries, function a important resource of reference for basics and purposes of delivery phenomena, and supply capability textbooks to senior undergraduate and graduate scholars.

This assessment e-book offers state of the art expositions of significant advances through theoretical, numerical and experimental experiences from a molecular, microscopic, mesoscopic, macroscopic or megascopic viewpoint around the spectrum of delivery phenomena, from medical enquiries to useful functions. This new quantity of the yearly overview "Advances in delivery Phenomena" sequence presents in-depth assessment articles masking the fields of mass move, fluid mechanics, warmth move and thermodynamics.

This evaluate ebook presents cutting-edge expositions of significant advances through theoretical, numerical and experimental reports from a molecular, microscopic, mesoscopic, macroscopic or megascopic viewpoint around the spectrum of shipping phenomena, from medical enquiries to sensible purposes. This new quantity of the once a year overview "Advances in delivery Phenomena" sequence offers in-depth assessment articles protecting the fields of mass move, fluid mechanics, warmth move and thermodynamics.

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And later Al-Fahed et al. [56] measured the laminar flow heat transfer and pressure drop in micro-fin tubes. They found that the heat transfer and pressure drop in micro-fin tubes were only slightly higher than those in plain tubes and hence recommended that micro-fin tubes not very suitable for laminar flow condition. To study the heat transfer performance of micro-fin tube, Li [57] and Li et al. [58-60] carried out experimental and numerical investigations on a conventional micro-fin tube, shown in Fig.

1K. 14 respectively. The larger thermal conductivity locates on the neighborhood of heat flow outlets, where the heat flux is larger. 2 K. 14. 1 K Fig. 33 25 X 0 Fig. 112 = = T2 300K Q2 1250W 1 24 2. 548 1 1 24 2. 2 K Fig. 15. 11. This problem was optimized numerically by performing the same procedure for symmetric problem. 17 respectively. -X. -Y. 0 m ˙ ˙ T1 300K T2 200K adiabatic Fig. 0 1 X 0 Fig. 16 shows that the thermal conductivity is no longer distributed symmetrically and the heat flow rate at the low temperature outlet is relative larger.

80 Optimization Principles for Heat Convection 77 4. 77 77 1. 3K 48 1. 7W MEG principle ˙ Qt 2500 W Fig. 19 The optimal temperature field The average temperatures in the domain after optimization based on the MEG principle and EED principle are listed in table 2. It is seen that the difference of average temperature is very small. 21 respectively. 21 that the results are much different from those of the symmetry case. 20 shows that high thermal conductivity locates at the two outlets, and higher thermal conductivity is located at the higher temperature outlet.

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