Advances in numerical heat transfer by Minkowycz W.J., Sparrow E.M. (eds.)

By Minkowycz W.J., Sparrow E.M. (eds.)

V.2. High-performance computing for fluid circulate and warmth move / D.W. Pepper and J.M. Lombardo -- Unstructured finite quantity tools for multi-mode warmth move / S.R. Mathur and J.Y. Murthy -- Spectral point tools for unsteady fluid stream and warmth move in advanced geometrics : technique and functions / C.H. Amon -- Finite-volume procedure for radiation warmth move / J.C. Chai and S.V. Patankar -- Boundary aspect equipment for warmth conduction / A.J. Kassab and L.C. Wrobel -- Molecular dynamics technique for microscale warmth move / S. Maruyama -- Numerical equipment in microscale warmth move : modeling of phase-change and laser interactions with fabrics / C.P. Grigoropoulos and M. Ye -- present prestige of using parallel computing in turbulent reacting flows : computations related to sprays, scalar Monte Carlo chance density functionality and unstructured grids / M.S. Raju -- review of present computational reports of warmth move in porous media and their applications-forced convection and multiphase warmth move / H. Hadim and okay. Vafai -- review of present computational reports of warmth move in porous media and their applications-natural and combined convection / okay. Vafai and H. Hadim -- fresh development and a few demanding situations in thermal modeling of digital platforms / Y. Joshi

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A: Appl. vol. 50, pp. 809–834, 2006. 17. W. Dai, A. Bejan, X. Tang, L. Zhang, and R. Nassar, optimal Temperature Distribution in a Three Dimensional Triple-Layered Skin Structure with Embedded Vasculature, J. Appl. Phys. vol. 99(104702), pp. 809–834, 2006. 18. y. He, M. Shirazaki, H. Liu, R. Himeno, and Z. Sun, A Numerical Coupling Model to Analyze the Blood Flow, Temperature, and oxygen Transport in Human Breast Tumor under Laser Irradiation, Comp. Biol. Med. vol. 36, pp. 1336–1350, 2006. 19. T.

3–20, 1996. 2. J. R. oleson, D. A. Sim, and M. R. Manning, Analysis of Prognostic Variables in Hyperthermia Treatment of 161 Patients, Int. J. Radiat. Oncol. Biol. Phys. vol. 10, pp. 2231–2239, 1994. 3. M. W. Dewhirst and T. V. Samulski, Hyperthermia in the Treatment for Cancer, Kalamazoo, MI: Upjohn, 1988. 4. S. B. Field and J. W. Hand, An Introduction to the Practical Aspects of Hyperthermia, New york: Taylor & Francis, 1990. 5. V. Muralidharan, C. Malcontenti-Wilson, and C. Cristophi, Interstitial Laser Hyperthermia for Colorectal Liver Metastases: The Effect of Thermal Sensitization and the Use of a Cylindrical Diffuser Tip on Tumor Necrosis, J.

Sherar, and J. W. Hunt, An Investigation of the Flow Dependence of Temperature Gradients near Large Vessels during Steady State and Transient Tissue Heating, Phys. Med. Biol. vol. 44, pp. 1479– 1497, 1999. 16. X. Tang, W. Dai, R. Nassar, and A. Bejan, optimal Temperature Distribution in a Three-Dimensional Triple-Layered Skin Structure Embedded with Artery and Vein Vasculature, Num. : Pt. A: Appl. vol. 50, pp. 809–834, 2006. 17. W. Dai, A. Bejan, X. Tang, L. Zhang, and R. Nassar, optimal Temperature Distribution in a Three Dimensional Triple-Layered Skin Structure with Embedded Vasculature, J.

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