内燃机的传热研究(Ⅰ)
被引量:3
Review on Study of Heat Transfer in Engines
摘要
研究内燃机的传热对研制高强化低散热发动机是很重要的。本文综合了世界先进的研究经验,从传热的基本概念及其对发动机设计的影响,传热量准确分布的测量方法,建立传热模型和绝热发动机传热情况等方面做了介绍。
出处
《车用发动机》
北大核心
1992年第2期10-16,共7页
Vehicle Engine
同被引文献34
-
1KAJIWARA H, FUJIHIRO Y,NEGISHI H. Predictionof temperature on pistons with cooling gallery in dieselengines using CFD tool[R]. SAE 2003-01-0986,2003.
-
2CHOI U S. Enhancing thermal conductivity of fluids withnanoparticles, developments and applications of non-new-tonian flows[J]. NewYork: ASME, 1995,66: 99-103.
-
3EASTMAN J A,CHOI U S,LI. Enhanced thermalconductivity through the development of nanofluids, In:Kornarneni S,Parker J C and Wollenberger H J,Nanophase and Nanocomposite Materials [J]. HeatTransfer, 1997,457:1-11.
-
4BANG I C,CHANG S H. Boiling heat transfer perform-ance and phenomena of Al2 O3 -water nano-fluids from aplain surface in a pool International, Journal of Heat andMass Transfer, 2005,48(12) : 2407-2419.
-
5KANG S W, WEI W C,TSAI S H, et al. Experimen-tal investigation of silver nano-fluid on heat pipe thermalperformance]]J]. Applied Thermal Engineering, 2006,26(17-18): 2377-2382.
-
6LIN Y H, KANG S W, CHEN H L. Effect of silvernano-fluid on pulsating heat pipe thermal performance[J], Applied Thermal Engineering, 2008,28 (11-12 ):1312-1317.
-
7LAI W Y, VINOD S, PHELAN P E. Convective heattransfer for water-based alumina nanofluids in a single1.02-mm tube[J], Journal of Heat Transfer, 2009,131(11): 112401-9.
-
8TAE K,YONG H J,SOON H C. An experimental studyon CHF enhancement in flow boiling using Al2 ()3 nano-fluid[J], International Journal of Heat and Mass Trans-fer, 2010, 53(5-6): 1015-1022.
-
9CLEMENT K,YU F. Experimental and theoretical studiesof nanofluid thermal conductivity enhancement : a review[J]. Nanoscale Research Letters,2011,6(16) : 229.
-
10HAMED M M T,ZEINALI H S, ETEMAD S G, etal. Heat transfer enhancement by application of nano-powder[J]. J Nanopart Res, 2010,12(7) : 2611-2619.
引证文献3
-
1张亮,白敏丽,吕继组,卞永宁,刘浩,王鹏,胡成志.随活塞同步振动下纳米流体的强化传热特性[J].实验流体力学,2013,27(4):32-39.
-
2张亮,白敏丽.往复振荡对活塞冷却油腔内纳米流体传热及流动特性的影响[J].振动与冲击,2017,36(5):192-198.
-
3吕继组,高林松,常胜南,邢志远,姜洪鹏,白敏丽.壁面改性强化活塞油腔换热的模拟试验[J].内燃机学报,2022,40(5):457-462. 被引量:1
-
1李贺红.热电偶的正确使用[J].玻璃译林,1998(10):38-39.
-
2刘宜,王划一.热电偶的温度特性[J].山东工业大学学报,1991,21(3):48-51.
-
3胡万国.在加热炉微机控制中炉温的作用[J].南方钢铁,1991(4):41-42.
-
4胡学红,郑建国.提高位式控温效果的几种方法[J].电世界,1999,40(12):15-15.
-
5陈国华,毛建华,袁兰琴.内燃机的传热研究(Ⅱ)[J].车用发动机,1992(6):4-7.
-
6华建设.热电偶测量气体温度的误差分析及改进措施[J].能源季刊,1990(3):66-68.
-
7程乐鸣.大型循环流化床锅炉的传热研究[J].动力工程,2000,20(2):587-591. 被引量:14
-
8朱光衡.测温系统误差的处理方法[J].南化科技,1994,15(4):16-17.
-
9董芃,温龙.循环流化床传热研究的综述[J].热能动力工程,1990,5(6):30-36. 被引量:5
-
10汪琦.单侧紧排受热管传热研究[J].工锅技术,1991,10(1):31-34.