Open Access
Issue |
JNWPU
Volume 40, Number 2, April 2022
|
|
---|---|---|
Page(s) | 296 - 305 | |
DOI | https://doi.org/10.1051/jnwpu/20224020296 | |
Published online | 03 June 2022 |
- Ortega-Casanova J, Granados-Ortiz F J. Numerical simulation of the heat transfer from a heated plate with surface variations to an impinging jet[J]. International Journal of Heat and Mass Transfer, 2014, 76: 128–143 [Article] [CrossRef] [Google Scholar]
- Haider S A, Yan X T. Jet diameter effect on impingement jet cooling on the leading edge of a turbine blade[C]//54th AIAA Aerospace Sciences Meeting, 2016 [Google Scholar]
- Harrington J, Hossain J, Wang W, et al. Effect of target wall curvature on heat transfer and pressure loss from jet array impingement[J]. Journal of Turbomachinery, 2017, 139(5): 051004 [Article] [CrossRef] [Google Scholar]
- Rim Ben Kalifa, Sabra Hablib, Nejla Mahjoub Saïd, et al. Parametric analysis of a round jet impingement on a heated plate[J]. International Journal of Heat and Fluid Flow, 2016, 57: 11–23 [Article] [CrossRef] [Google Scholar]
- Hamed Shariatmadar, Shahab Mousavian, Mohammadkazem Sadoughi, et al. Experimental and numerical study on heat transfer characteristics of various geometrical arrangement of impinging jet arrays[J]. International Journal of Thermal Sciences, 2016, 102: 26–38 [Article] [CrossRef] [Google Scholar]
- Singh Dushyant, Premachandran B, Kohli Sangeeta. Experimental and numerical investigation of jet impingement cooling of a circular cylinder[J]. International Journal of Heat and Mass Transfer, 2013, 60: 672–688 [Article] [CrossRef] [Google Scholar]
- Li W, Xu M, Ren J, et al. Experimental investigation of local and average heat transfer coefficients under an inline impinging jet array, including jets with low impingement distance and inclined angle[J]. Journal of Heat Transfer, 2017, 139(1): 012201 [Article] [CrossRef] [Google Scholar]
- Liu Haiyong, Liu Cunliang, Wu Wenming, et al. Experimental investigation on heat transfer characteristics on target wall in a trapezoid duct with incline impingement jets[J]. Journal of Propulsion Technology, 2014, 35(3): 384–391 [Article] (in Chinese) [Google Scholar]
- Du Kun, Li Jun, Yan Xin. Effect of the slot jet impingement on the cooling performance of the vane endwall[J]. Journal of Xi’an Jiaotong University, 2015, 49(1): 21–26 [Google Scholar]
- Zhang L, Cao G, FengK, et al. Improvement of multi-hole airflow impingement on flow and heat transfer characteristics inside a turbine vane cavity[J]. Applied Sciences, 2021, 11(21): 1–20 [Article] [Google Scholar]
- Tang Chan, Zhang Jingzhou, Tan Xiaoming, et al. Experimental and numerical study on pulsed-jet impingement heat transfer with an additional collection chamber[J]. Journal of Aerospace Power, 2019, 34(6): 1334–1343[Article] (in Chinese) [Google Scholar]
- Li Zhi, Dou Ruifeng, Wen Zhi, et al. Numerical simulation of single-nozzle jet impinging flow and heat transfer process[J]. Industrial Furnace, 2011, 33(4): 1–7 [Article] (in Chinese) [Google Scholar]
- Sriromreun Parkpoom, Sriromreun Paranee. A numerical and experimental investigation of dimple effects on heat transfer enhancement with impinging jets[J]. Energies, 2019, 12(5): 1–16 [Google Scholar]
- Jiang Xinwei, Xu Weijiang, Zhu Huiren. Study of heat transfer characteristics in a dimpled wall channel with impingement jets[J]. Journal of Engineering Thermophysics, 2016, 37(12): 2638–2644 [Article] (in Chinese) [Google Scholar]
- Jiang Xinwei, Xu Weijiang, Zhu Huiren. Experiment of impingement heat transfer characteristics in dimpled wedge channel[J]. Journal of Aerospace Power, 2017, 32(12): 2981–2987 [Article] (in Chinese) [Google Scholar]
- Chen L, Brakmann R G A, Weigand B, et al. Experimental and numerical heat transfer investigation of an impingement jet array with V-ribs on the target plate and on the impingement plate[J]. International Journal of Heat and Fluid Flow, 2017, 68: 126–138 [Article] [CrossRef] [Google Scholar]
- Xie Y, Shi D, Shen Z. Experimental and numerical investigation of heat transfer and friction performance for turbine blade tip cap with combined pin-fin-dimple/protrusion structure[J]. International Journal of Heat and Mass Transfer, 2017, 104: 1120–1134 [Article] [CrossRef] [Google Scholar]
- Huang X, Yang W, Ming T, et al. Heat transfer enhancement on a microchannel heat sink with impinging jets and dimples[J]. International Journal of Heat and Mass Transfer, 2017, 112: 113–124 [Article] [CrossRef] [Google Scholar]
- Tong F, Gou W, Zhao Z, et al. Numerical investigation of impingement heat transfer on smooth and roughened surfaces in a high-pressure turbine inner casing[J]. International Journal of Thermal Sciences, 2020, 149: 106186 [Article] [CrossRef] [Google Scholar]
- Zhou J, Wang X, Li J. Influences of effusion hole diameter on impingement/effusion cooling performance at turbine blade leading edge[J]. International Journal of Heat and Mass Transfer, 2019, 134: 1101–1118 [Article] [CrossRef] [Google Scholar]
- Lam P, Prakash K A. A numerical investigation and design optimization of impingement cooling system with an array of air jets[J]. International Journal of Heat and Mass Transfer, 2017, 108: 880–900 [Article] [CrossRef] [Google Scholar]
- Ries F, Li Y, Klingenberg D, et al. Near-wall thermal processes in an inclined impinging jet: analysis of heat transport and entropy generation mechanisms[J]. Energies, 2018, 11(6): 1–23 [Article] [Google Scholar]
- Shuja S Z, Yilbas B S, Budair M O. Investigation into a confined laminar swirling jet and entropy production[J]. International Journal of Numerical Methods for Heat and Fluid Flow, 2002, 12(7): 870–877 [Article] [CrossRef] [Google Scholar]
- Natalini G, Sciubba E. Minimization of the local rates of entropy production in the design of air-cooled gas turbine blades[J]. Journal of Engineering for Gas Turbines & Power, 1999, 121(3): 466–475 [Article] [CrossRef] [Google Scholar]
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