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          柱型散熱鰭片幾何尺寸影響熱傳性能之研究

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          參考文獻
          【1】J. G. Maveety and J. F. Hendricks, “A heat sink performance study considering material, geometry, nozzle placement, and reynolds number with air impingement”, ASME J. Electronic Packaging,Vol.121, pp. 156-161 (1999).
          【2】Intel Corporation, Intel ? Pentium ? 4 Processor Extreme Edition on 0.13 Micron Process in the 775-land Package, November 2004.
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          【4】J. G. Maveety and H. H. Jung, “Design of an optimal pin-fin heat sink with air impingement cooling”, Int. Comm. Heat Mass Transfer, Vol.27, No.2, pp.229-240(2000).
          【5】V. A. Chiriac and A. Ortega, ”A numerical study of the unsteady flow and heat transfer in a transitional confined slot jet impingingon an isothermal surface”, Int. J. Heat Mass Transfer 45,1237-1248(2002).
          【6】R. S. Amano, “Electronic cooling technology with use of turbulent impinging jets”, IEEE 0-7803-5912-7 Inter Society Conference on 80 Thermal Phenomena, 339-346(2000).
          【7】S. V. Garimella and B. Nenaydykh, “Nozzle-geometry effects in liquid jet impingement heat transfer”, Int. J. Heat Mass Transfer, Vol.39, No.14, 2915-2923(1996).
          【8】Malin, ”Modelling the effects of lateral divergence on radially spreading turbulent jets”, Computers and Fluid, Vol.17, No.3,453-465(1989).
          【9】D. B. Spalding,” The prediction of two-dimensional steady turbulent elliptic flows”, Int. Sem. Heat and Mass Transfer in Flows with Separated Regions, Herceg Novi Yugoslavia(1969).
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          81
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          Particle-Sources-In Cell (PSI-Cell) Model for Gas-Droplet Flows”,Journal of Fluids Engineering, pp. 325-332, June, (1977).82

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