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厉青峰等:脉动热管的理论研究与应用新进展 ·1125· silicon-based micro oscillating heat pipes with and without expan- Mass Transfer,2017,53(6):1983 ding channels.CIESC J,2017,68(5):1803 [63]Hu Y X,Liu T Q,Li X Y,et al.Heat transfer enhancement of (孙芹,屈健,袁建平.等截面和变截面通道硅基微型脉动 micro oscillating heat pipes with self-rewetting fluid.IntHeat 热管传热特性比较.化工学报.2017,68(5):1803) Mass Transfer,2014,70:496 [50]Tseng C Y,Yang K S,Chien K H,et al.Investigation of the [64]Zhang M,Su X J,Han W,et al.Heat transfer characteristics of performance of pulsating heat pipe subject to uniform/alternating pulsating heat pipe with grapheme oxide/self-rewetting fluid. tube diameters.Exp Therm Fluid Sci,2014,54:85 Chem Ind Eng Prog,2015,34(8):2951 [51]Li X J,Qu J.Han X Y,et al.Start-up and heat transfer per- (张明,苏新军,韩魏,等。氧化石墨烯/自湿润流体脉动热 formance of micro-grooved oscillating heat pipe.C/ESC J,2016, 管的传热特性.化工进展,2015,34(8):2951) 67(6):2263 [65]Shi WX,Pan L S,Li W Y.Influences of inclination and cooling (李孝军,屈健,韩新月,等.微槽道脉动热管的启动及传热 condition on 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CIESC J, 2017, 68(5): 1803 (孙芹, 屈健, 袁建平. 等截面和变截面通道硅基微型脉动 热管传热特性比较. 化工学报, 2017, 68(5): 1803) [50] Tseng C Y, Yang K S, Chien K H, et al. Investigation of the performance of pulsating heat pipe subject to uniform/ alternating tube diameters. Exp Therm Fluid Sci, 2014, 54: 85 [51] Li X J, Qu J, Han X Y, et al. Start鄄up and heat transfer per鄄 formance of micro鄄grooved oscillating heat pipe. CIESC J, 2016, 67(6): 2263 (李孝军, 屈健, 韩新月, 等. 微槽道脉动热管的启动及传热 特性. 化工学报, 2016, 67(6): 2263) [52] Pastukhov V G, Maydanik Y F. Development of a pulsating heat pipe with a directional circulation of a working fluid. Appl Therm Eng, 2016, 109: 155 [53] Aboutalebi M, Moghaddam A M N, Mohammadi N, et al. Ex鄄 perimental investigation on performance of a rotating closed loop pulsating heat pipe. Int Commun Heat Mass Transfer, 2013, 45: 137 [54] Hao T T, Ma X H, Lan Z, et al. Effects of hydrophobic surface on heat transfer performance and oscillating motion for a pulsating heat pipe. J Eng Thermophys, 2014, 35(1): 152 (郝婷婷, 马学虎, 兰忠, 等. 疏水表面对脉动热管性能的影 响. 工程热物理学报, 2014, 35(1): 152) [55] Hao T T, Ma X H, Lan Z, et al. Experimental investigation of the effect of superhydrophilic surface on the liquid film deposition of a pulsating heat pipe. J Eng Thermophys, 2015, 36(1): 168 (郝婷婷, 马学虎, 兰忠, 等. 超亲水脉动热管液弹液膜沉积 的实验研究. 工程热物理学报, 2015, 36(1): 168) [56] Mohammadi M, Taslimifar M, Haghayegh S, et al. Open鄄loop pulsating heat pipes charged with magnetic nanofluids: powerful candidates for future electronic coolers. Nanoscale Microscale Thermophys Eng, 2014, 18(1): 18 [57] Taslimifar M, Mohammadi M, Afshin H, et al. Overall thermal performance of ferrofluidic open loop pulsating heat pipes: an ex鄄 perimental approach. Int J Therm Sci, 2013, 65: 234 [58] Wang X, Mao X X, Wang L, et al. Characteristics of heat trans鄄 fer limit in pulsating heat pipe. J Tianjin Univ, 2012, 45(10): 870 (王迅, 毛欣欣, 王磊, 等. 脉动热管的传热极限特性. 天津 大学学报, 2012, 45(10): 870) [59] Cui X Y, Zhu Y, Li Z H, et al. Combination study of operation characteristics and heat transfer mechanism for pulsating heat pipe. Appl Therm Eng, 2014, 65(1鄄2): 394 [60] Wang S F, Chen J J, Hu Y X, et al. Effect of evaporation sec鄄 tion and condensation section length on thermal performance of flat plate heat pipe. Appl Therm Eng, 2011, 31(14鄄15): 2367 [61] Karthikeyan V K, Ramachandran K, Pillai B C, et al. Effect of nanofluids on thermal performance of closed loop pulsating heat pipe. Exp Therm Fluid Sci, 2014, 54: 171 [62] Wang W Q, Cui X Y, Zhu Y. Heat transfer performance of a pulsating heat pipe charged with acetone鄄based mixtures. Heat Mass Transfer, 2017, 53(6): 1983 [63] Hu Y X, Liu T Q, Li X Y, et al. Heat transfer enhancement of micro oscillating heat pipes with self鄄rewetting fluid. Int J Heat Mass Transfer, 2014, 70: 496 [64] Zhang M, Su X J, Han W, et al. Heat transfer characteristics of pulsating heat pipe with grapheme oxide / self鄄rewetting fluid. Chem Ind Eng Prog, 2015, 34(8): 2951 (张明, 苏新军, 韩魏, 等. 氧化石墨烯/ 自湿润流体脉动热 管的传热特性. 化工进展, 2015, 34(8): 2951) [65] Shi W X, Pan L S, Li W Y. Influences of inclination and cooling condition on heat transfer performance of closed loop plate pulsa鄄 ting heat pipe with parallel channels. CIESC J, 2014, 65(2): 532 (史维秀, 潘利生, 李惟毅. 倾角及冷却工况对多通路并联 回路板式脉动热管传热性能的影响. 化工学报, 2014, 65 (2): 532) [66] Saha N, Das P K, Sharma P K. Influence of process variables on the hydrodynamics and performance of a single loop pulsating heat pipe. Int J Heat Mass Transfer, 2014, 74: 238 [67] Kearney D J, Suleman O, Griffin J, et al. Thermal performance of a PCB embedded pulsating heat pipe for power electronics ap鄄 plications. Appl Therm Eng, 2016, 98: 798 [68] Dang C, Jia L, Lu Q Y. Investigation on thermal design of a rack with the pulsating heat pipe for cooling CPUs. Appl Therm Eng, 2017, 110: 390 [69] L俟 L C, Li J, Zhou G H. A robust pulsating heat pipe cooler for integrated high power LED chips. Heat Mass Transfer, 2017, 53 (11): 3305 [70] Li Z, Jia L, Wei W B. Experimental study on natural convection cooling of LED based on plate pulsating heat pipe. J Eng Ther鄄 mophys, 2013, 34(7): 1361 (李志, 贾力, 魏文博. 基于板式脉动热管的 LED 自然对流 冷却实验研究. 工程热物理学报, 2013, 34(7): 1361) [71] Arab M, Soltanieh M, Shafii M B. Experimental investigation of extra鄄long pulsating heat pipe application in solar water heaters. Exp Therm Fluid Sci, 2012, 42: 6 [72] Nguyen K B, Yoon S H, Choi J H. Effect of working鄄fluid filling ratio and cooling鄄water flow rate on the performance of solar col鄄 lector with closed鄄loop oscillating heat pipe. J Mech Sci Technol, 2012, 26(1): 251 [73] Kargarsharifabad H, Mamouri S J, Shafii M B, et al. Experi鄄 mental investigation of the effect of using closed鄄loop pulsating heat pipe on the performance of a flat plate solar collector. J Re鄄 newable Sustainable Energy, 2013, 5(1): 013106 [74] Nuntaphan A, Vithayasai S, Vorayos N, et al. Use of oscillating heat pipe technique as extended surface in wire鄄on鄄tube heat ex鄄 changer for heat transfer enhancement. Int Commun Heat Mass Transfer, 2010, 37(3): 287 [75] Liu J H, Shang F M, Liu D Y. Enhanced heat transfer character鄄 istics of synergistic coupling between pulsating heat pipes. CIESC J, 2011, 62(6): 1549 (刘建红, 商福民, 刘登瀛. 脉动热管间协同耦合强化传热 ·1125·
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