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Condensation of refrigerants in horizontal microfin tubes: comparison of prediction methods for heat transfer

机译:水平微翅片管中制冷剂的冷凝:传热预测方法的比较

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摘要

A comparison was made between the predictions of previously proposed empirical correlations and theoretical model and available experimental data for the heat transfer coefficient during condensation of refrigerants in horizontal microfin tubes. The refrigerants tested were R11, R123, R134a, R22 and R41OA. Experimental data for six tubes with the tube inside diameter at fin root of 6.49-8.88 mm, the fin height of 0.16-0.24 mm, fin pitch of 0.34-0.53 mm and helix angle of groove of 12-20° were adopted. The r.m.s. error of the predictions for all tubes and all refrigerants decreased in the order of the correlations proposed by Luu and Bergles [ASHRAE Trans. 86 (1980) 293], Cavallini et al. [Cavallini A, Doretti L, Klammsteiner N, Longo L G, Rossetto L. Condensation of new refrigerants inside smooth and enhanced tubes. In: Proc. 19th Int. Cong. Refrigeration, vol. IV, Hague, The Netherlands, 1995. p. 105-14], Shikazono et al. [Trans. Jap. Sco. Mech. Engrs. 64 (1995)196], Kedzierski and Goncalves [J. Enhanced Heat Transfer 6 (1999) 16], Yu and Koyama [Yu J, Koyama S. Condensation heat transfer of pure refrigerants in microfin tubes. In: Proc. Int. Refrigeration Conference at Purdue Univ., West Lafayette, USA, 1998. p.325-30], and the theoretical model proposed by Wang et al. [Int. J. Heat Mass Transfer 45 (2002)1513].
机译:在先前提出的经验相关性和理论模型的预测之间进行了比较,并获得了水平微翅片管中制冷剂冷凝过程中传热系数的实验数据。测试的制冷剂为R11,R123,R134a,R22和R41OA。采用六根管的实验数据,其中管的内径在鳍根处为6.49-8.88 mm,鳍高为0.16-0.24 mm,鳍间距为0.34-0.53 mm,凹槽的螺旋角为12-20°。 r.m.s.所有管和所有制冷剂的预测误差均按Luu和Bergles提出的相关性顺序降低[ASHRAE Trans。 86(1980)293],Cavallini等。 [Cavallini A,Doretti L,Klammsteiner N,Longo L G,Rossetto L.新的制冷剂在光滑和增强管内的冷凝。在:Proc。 19th Int。 ong制冷,卷。第四页,荷兰海牙,1995年。 105-14],Shikazono等。 [翻译。日本斯科机甲。工程师。 64(1995)196],Kedzierski和Goncalves [J.增强传热6(1999)16],Yu和Koyama [Yu J,Koyama S.超细翅片管中纯制冷剂的冷凝传热。在:Proc。诠释美国西拉斐特,普渡大学制冷会议,1998年,第325-30页],以及Wang等人提出的理论模型。 [Int。 J.热质传递45(2002)1513]。

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