Three Concentric Tube Heat Exchange With NTU-Effective Method
DOI:
https://doi.org/10.35335/jbst.v10i3.1761Keywords:
Heat Exchanger, Double Concentric Pipe, Triple Concentric PipeAbstract
Heat exchanger is an exchange device with three concentric pipe tubes with direct flow used to reduce hot fluid to cold fluid using cold water fluid. the research was carried out triple pipes that flowed in the same direction with 3 variationsin the temperature pipe of the hot water fluid th with a temperature of 50oC, 55oC and 60oC with temperature of cold water fluid tc 25oC and this study used a flow rate of 0.000025 m3/s = 0.000033 m3/s and 0.000041 m3/s.The results of this study showed that the equilibrium temperature obtained from the experimental results of the effectiveness of the one-way pipeline flow was 1 = 32.99% the effectiveness of thr second channel pipe of 2 = 66.48% and ont the effectiveness of the third channel pipe of 3 = 33.57% 3rd data with a debut of 0.000025 m3/s and the effectiveness of the opposite flow the channel one pipe is 1 = 55.16% on the effectiveness of the second channel pipe of 2 = 66.48% and on the effectiveness of the third channel pipe of 3 = 60.59% it is obtained in the with to 7 with a discharge of 0.000041 m3/s.
References
Cengel, Y. A. 2006. Thermodynamics An Engineering Approach,Edition
Incropera, F. P, dkk. Fundamentals of Heat and Mass Transfer, Edition. New York : John Wiley & Sons
Luqman Buchori, ST, MT Perpindahan Panas Heat Transfer edisi ke-2 Universitas Gadjah Mada, Yogyakarta, 2005.
Gulta, J.P 1986 Working With Heat and Exchangers, Edition. Entiled Fundamentals of heat exchanger and pressure vessel teknologi.
Fatimah, Siti. Analisis elevasi aliran air pendingin kondensor terhadap laju perpindahan kalor dan efisiensi kerja mesin. Diss. Universitas Islam Negeri Maulana Malik Ibrahim, 2008.
Anowar Hossain, Md. 2017. Experimental Analysis of a Triple Concentric Tube Heat Exchanger. Jurnal. Universitas, Gazipur, Bangladesh.
Aprilino, Kurnia Iqbal. PENGARUH KECEPATAN ALIRAN TERHADAP EFISIENSI ALAT PENUKAR PANAS (EFFECT OF FLOW RATE TO EFFICIENCY OF HEAT EXCHANGER). Diss. UNDIP, 2016.
Cengel, Yunus.A. 2003. Heat Transfer: A Practical Approach, ed. New York : McGraw-Hill.
Pardede, A. R. O. (2016). Analisis Penggantian Pre-Cooler Untuk Turbin Gas (Studi Kasus Pada PLTG 3 Alstom di PT PT. PLN (Persero) Sektor Keramasan, Palembang, Sumatera Selatan) (Doctoral dissertation, Institut Teknologi Sepuluh Nopember).
Holman, J. P. 1997. Heat Transfer, Edisi ke-10. Jakarta :Erlangga.
Hidayatullah, Reza, and Bambang Arip Dwiyantoro. "Studi Numerik Pengaruh Baffle Inclination Pada Alat Penukar Kalor Tipe U–Tube Terhadap Aliran Fluida Dan Perpindahan Panas." Jurnal Teknik ITS 3.2 (2014): B198-B203.
Kuppan, T. 2000. Heat Exchanger Design Handbook, Second Edition.Newyork : Marcel Dekker.Inc
Munson, Bruce R. 1997. Mekanika Fluida, edisi ke-2. Jakarta : Erlangga.
Kreith, Frank. 1877. Principles Of Heat Transfer, ed. New York : Harper and Row.
Pitts, Donald. 2008. Perpindahan Kalor, edisi ke-2. Erlangga :2108
Hundry, G. F., A. R. Trott, T. C. Welch. Tanpa Tahun. Refrigeration and Air Conditioning – Fourth Edition. B.H.
W.J. Minkowycz and J.P Hartnett Efektiveness-NTU Relations For Triple Concentric-Tube Heat Exchanger. Trabzon, Turkey.
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