Pengaruh Variasi Sudut Sudu Turbocyclone terhadap Kinerja Mesin Bensin Satu Silinder
DOI:
https://doi.org/10.61132/mars.v3i5.1112Keywords:
Engine Efficiency, Exhaust Emissions, Fuel Consumption, Fuel Injection System, TurbocycloneAbstract
The purpose of this study is to develop an additional device for vehicles with fuel injection systems to improve fuel consumption efficiency and reduce exhaust emissions, even for older vehicles. The turbocyclone is an auxiliary component installed in the air intake duct before the throttle body to create a swirling airflow entering the combustion chamber. Testing was conducted at engine speeds ranging from 1500 rpm to 6500 rpm, with increments of 1000 rpm. This research aims to minimize fuel consumption and exhaust gas emissions. The experimental method was used, testing exhaust gas contents such as HC, CO, CO₂, and O₂ using a gas analyzer, and measuring fuel consumption based on fuel volume and time. Data processing employed a factorial DOE (Design of Experiments) to analyze results. The dependent variables were exhaust gas emissions and fuel consumption, while the independent variable was the turbocyclone blade angle variations of 20°, 40°, and 60°. The results show that the best reduction in exhaust emissions (HC, CO, CO₂, and O₂) and fuel efficiency occurred at a 40° blade angle, whereas fuel consumption increased at a 60° blade angle.
References
Fauzi, Y. R. (2018). Pengaruh penambahan turbo cyclone aksial terhadap aliran dan performa motor bakar. Turbo, 7(1), 25–31. https://doi.org/10.24127/trb.v7i1.679
Ginting, T. (2021). Pengaruh jenis busi terhadap konsumsi bahan bakar motor bakar 4 tak. Jurnal Informatika Kaputama (JIK), 5(1), 89–98. https://doi.org/10.59697/jik.v5i1.306
Halim, R. G., Riza, A., & Darmawan, S. (2023). Pengaruh nilai oktan terhadap unjuk kerja mesin dan kajian analisis pembakaran akibat delay combustion pada mesin otto satu silinder. Jurnal Cahaya Mandalika ISSN 2721-4796 (online), 3(1), 223–230.
Huda, S., Purwanto, W., & Wisesa, B. U. (2021). The effect of turbo cyclone installation on 4 stroke motor cycle on fuel consumption and exhaust emissions. Motivection, 3(2), 69–76. https://doi.org/10.46574/motivection.v3i2.87
Mahendra, C. R., Sugita, I. W., & Syaka, D. R. B. (2022). Pengaruh pencampuran bioethanol sebagai bahan bakar terhadap performa mesin dan emisi gas buang pada motor bensin empat langkah satu silinder. Jurnal Konversi Energi dan Manufaktur, 7(1), 354397. https://doi.org/10.21009/JKEM.7.1.7
Pangestu, O. S. W., Firdausy, M. F., Rahmadian, R. R., Maulana, I., & Venriza, O. (2024). Optimasi penambahan aseton untuk meningkatkan nilai oktan dan performa mesin bensin pada pertalite. Jurnal Teknologi Kimia Unimal, 13(1), 83–96. https://doi.org/10.29103/jtku.v13i1.16603
Pratama, S. P. (2022). Computational fluid dynamic analysis of turbo cyclone and intake manifold spacer on Honda Supra Fit. JTTM: Jurnal Terapan Teknik Mesin, 3(1), 9–18. https://doi.org/10.37373/jttm.v3i1.161
Riani, N. I., Lostari, A., & Wahyudi, M. A. (2023). The effect of pipe diameter and valve opening variations on Osborne Reynolds apparatus test. REM (Rekayasa Energi Manufaktur) Jurnal, 8(1), 29–36. https://doi.org/10.21070/r.e.m.v8i1.1668
Ridwan, Martias, & Andrizal. (2017). Pengaruh penggunaan turbo cyclone terhadap konsumsi bahan bakar dan emisi gas buang pada Mio Soul. Automotive Engineering Education Jurnal, 6, 1–5.
Susilo, S. H., Herminingtyas, Y. W., & Rarindo, H. (2020). Pengaruh luas permukaan cyclone dan putaran mesin terhadap performa engine 1500 cc. Jurnal Ilmiah Teknologi FST Undana, 14(1), 10–15.
Tacker, N., Elfiano, E., & ST., M. E. (2020). Pengaruh penambahan variasi zat aditif ke dalam bahan bakar RON 90 terhadap unjuk kerja dan emisi gas buang motor bensin tipe Spe Motoyama 460 GP. Skripsi: Universitas Islam Riau, x, 1–73.
Taufan, S. (2021). Pengembangan sumber daya manusia di industri otomotif melalui Institut Otomotif Indonesia. Jurnal Manajemen Strategi dan Aplikasi Bisnis, 4(2), 401–408. https://doi.org/10.36407/jmsab.v4i2.396
TI UII. (2013). Modul II ANOVA, 49. http://pendidikan-akuntansi.fe.uny.ac.id/sites/pendidikan-akuntansi.fe.uny.ac.id/files/Modul%202%20(ANOVA).pdf
Wiratno, T., Suwignyo, J., & Rahardjo, S. (2015). Perhitungan daya dan konsumsi bahan bakar motor bensin Yamaha LS 100 cc. Jurnal Traksi, 12(2), 58–75.
Zikri, I., & Lapisa, R. (2021). The effect of the addition of turbo cyclone on the inlet air on torque and power in the Toyota Avanza 1300 CC. MOTIVECTION: Journal of Mechanical, Electrical and Industrial Engineering, 3(2), 85–92. https://doi.org/10.46574/motivection.v3i2.90
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Mars : Jurnal Teknik Mesin, Industri, Elektro Dan Ilmu Komputer

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.



