[1] Han J C. Advanced Cooling in Gas Turbines 2016 Max Jakob Memorial Award Paper[J]. Journal of Heat Transfer, 2018, 140(11).
[2] Han J C, Ou S, Park J S, et al. Augmented Heat Transfer in Rectangular Channels of Narrow Aspect Ratios with Rib Turbulators[J]. International Journal of Heat and Mass Transfer, 1989, 32(9): 1619-1630.
[3] Han J C, Park J S. Developing Heat Transfer in Rectangular Channels with Rib Turbulators[J]. International Journal of Heat and Mass Transfer, 1988, 31(1): 183-195.
[4] Chung H, Park J S, Park S, et al. Augmented Heat Transfer for Angled Rib with Intersecting Rib in Rectangular Channels of Different Aspect Ratios[R]. ASME 2014-GT-26924.
[5] Kaewchoothong N, Maliwan K, Takeishi K, et al. Effect of Inclined Ribs on Heat Transfer Coefficient in Stationary Square Channel[J]. Theoretical and Applied Mechanics Letters, 2017, 7: 344-350.
[6] Wright L M, Gohardani A S. Effect of Turbulator Width and Spacing on the Thermal Performance of Angled Ribs in a Rectangular Channel(AR=3:1)[R]. ASME 2008-IMECE-66842.
[7] 周明轩, 薛树林, 贺宜红, 等. 高阻塞比肋化通道对流换热特性实验研究[J]. 推进技术, 2018, 39(2): 335-341.
[8] Yang W, Xue S, He Y, et al. Experimental Study on the Heat Transfer Characteristics of High Blockage Ribs Channel[J]. Experimental Thermal and Fluid Science, 2017, 83: 248-259.
[9] Tanda G, Abram R. Forced Convection Heat Transfer in Channels with Rib Turbulators Inclined at 45 Deg[J]. Journal of Turbomachinery, 2009, 131(2): 112-121.
[10] 刘 聪, 王 钊, 张宗卫. 带三角形V肋和反向V肋内冷通道强化换热机理研究[J]. 推进技术, 2019, 40(9): 2040-2049.
[11] Liou T M, Chen S H, Shih K C. Numerical Simulation of Turbulent Flow Field and Heat Transfer in a Two-Dimensional Channel with Periodic Slit Ribs[J]. International Journal of Heat and Mass Transfer, 2002, 45(22): 4493-4505.
[12] Hwang J J, Liou T M. Heat Transfer Augmentation in a Rectangular Channel with Slit Rib-Turbulators on Two Opposite Walls[R]. ASME 1995-GT-41.
[13] Yang Y T, Hwang C W. Numerical Calculations of Heat Transfer and Friction Characteristics in Rectangular Ducts with Slit and Solid Ribs Mounted on One Wall[J]. Numerical Heat Transfer, Part A: Applications, 2004, 45(4): 363-375.
[14] Panigrahi P K, Schroeder A, Kompenhans J. Turbulent Structures and Budgets Behind Permeable Ribs[J]. Experimental Thermal and Fluid Science, 2008, 32(4): 1011-1033.
[15] Tariq A, Sharima N, Mishra M. Aerothermal Characteristics of Solid and Slitted Pentagonal Rib Turbulators[J]. Journal of Heat Transfer, 2018, 140(6).
[16] Zheng D, Wang X, Yuan Q. Numerical Investigation on the Flow and Heat Transfer Characteristics in a Rectangular Channel with V-Shaped Slit Ribs[J]. Infrared Physics and Technology, 2019, 101: 56-67.
[17] Zheng D, Wang X, Yuan Q. The Flow and Heat Transfer Characteristics in a Rectangular Channel with Convergent and Divergent Slit Ribs[J]. International Journal of Heat and Mass Transfer, 2019, 141: 464-475.
[18] Li X, Xie G, Liu J, et al. Parametric Study on Flow Characteristics and Heat Transfer in Rectangular Channels with Strip Slits in Ribs on One Wall[J]. International Journal of Heat and Mass Transfer, 2020, 149(11).
[19] Wright L M, Fu W L, Han J C. Thermal Performance of Angled, V-Shaped, and W-Shaped Rib Turbulators in Rotating Rectangular Cooling Channels(AR=4:1)[J]. Journal of Turbomachinery, 2004, 126(4): 604-614.
|