Pengaruh Jumlah Baffle Terhadap Kinerja Alat Penukar Kalor Tipe Shell and Tube

Elvine Handika Putra, Irwin Bizzy

Abstract


Fungsi baffle dalam penukar kalor tipe shell and tube adalah untuk meningkatkan laju perpindahan kalor dari fluida panas ke fluida dingin atau sebaliknya dan sebagai penyangga tube yang ada pada shell. Tujuan penelitian ini adalah untuk mengetahui pengaruh variasi jumlah baffle yang diperlukan dalam perhitungan kinerja dari penukar kalor tipe shell and tube. Analisis kinerja di sini terdiri dari nilai koefisien perpindahan kalor, penurunan tekanan, dan efektivitas. Hasil analisis menunjukkan bahwa bertambahnya jumlah baffle pada penukar kalor terjadi peningkatan nilai koefisien perpindahan panas sisi shell, terjadi penurunan tekanan sisi shell, dan peningkatan efektivitas pada alat penukar kalor itu sendiri.

Keywords


Baffle, kinerja, penukar kalor, shell and tube

References


I. Bizzy and R. Setiadi, “Studi Perhitungan Alat Penukar Kalor Tipe Shell and Tube dengan Program Heat Transfer Research Inc. ( HTRI ),” Jurnal Rekayasa Mesin, vol. 13, no. 1, pp. 67–76, 2013.

S. M. Jokar, M. R. Rahimpour, and A. Shariati, “Heat exchanger application for environmental problem-reducing in flare systems of an oil refinery and a petrochemical plant: Two case studies,” Applied Thermal Engineering, vol. 106, pp. 796–810, 2016.

E. Satvirpal and S. Grewal, “Study the Effect of Single Segmental Baffle cut on Overall Heat Transfer Coefficient in Shell and Tube Heat Exchanger,” vol. 3, no. 6, pp. 1–7, 2018.

I. M. Mara and M. Z. Hidayatulloh, “Analisa perpindahan panas alat penukar kalor tipe shell and tube pada ball mill di PT . Amman Mineral Nusa Tenggara,” vol. 6, no. 2, 2016.

O. Khayal, “Fundamentals of Heat Exchangers,” International Journal of Research in Computer Applications and Robotics, vol. 6, no. December, pp. 1–11, 2019.

J. K. Min, J. H. Jeong, M. Y. Ha, and K. S. Kim, “High temperature heat exchanger studies for applications to gas turbines,” Heat and Mass Transfer/Waerme- und Stoffuebertragung, vol. 46, no. 2, pp. 175–186, 2009.

P. J. Heggs and P. D. Hills, “The design of heat exchangers fo batch reactors,” Heat exchange engineering, vol. 4, no. February 2015, pp. 219–235, 1994.

Çengel, Y. a. Thermodynamics: An Engineering Approach. McGraw-Hill,2004.


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