ANALISIS ALIRAN UDARA PADA PIPA KOMPOR BURNER

Authors

  • Irvan Septyan Mulyana Universitas Gunadarma

DOI:

https://doi.org/10.56127/jts.v3i2.1532

Keywords:

Flow Simulation, Burner Stove, Solidworks

Abstract

A used oil burner stove is a type of stove that uses used oil as fuel to produce fire and heat which is used in the cooking process. This concept is more commonly found in areas with limited access to conventional energy sources such as electricity or gas. Apart from that, there is a blower which has an important function to maintain sufficient and high-speed air flow towards the combustion axis, thereby helping to increase oil burning efficiency. This test was carried out using Solidworks software with the CFD or Computational Fluid Dynamic feature which has the function of analyzing fluid flow on an object by entering the required parameters. In this paper, a burner stove pipe with an initial cross-sectional area of 2" inches and a final cross-sectional area of 1/2" inches is used where an initial velocity input is given with independent variables of 2 m/s, 4 m/s and 6 m/s and the output is obtained or The results on the stove burner pipe were 17.9 m/s, 37.3 m/s and 54.6 m/s.

References

Mahardhika,. Khabibbullah Enggal dkk. 2020. Pengaruh Kecepatan Udara dan Debit Bahan Bakar pada Pembakaran Burner Berbahan Bakar Oli Bekas. Universitas Singaperbangsa Karawang. Vol. 4 No. 3

M.I.Riady dkk. 2022. Disain Dan Pembuatan Kompor Berbahan Bakar Oli Bekas Menggunakan Software 3d Autodesk Fusion 360,Palembang Seminar Nasional, Universitar Sriwijaya.

Ariawan Wahyu Pratomo. 2017. Pengembangan Burner Berbahan Bakar Oli Bekas Untuk Meningkatkan Efesiensi Pembakaran Kalsinasi Kapur Aktif. Semarang. Politeknik Negeri Semarang.

Trihaditia, Riza. & Lutvy Agustiawan, Moch. 2019. Efektifitas Rancang Bangun Alat (Burner) Oli Bekas Dalam Mendukung Proses Sterilisasi Media Jamur Tiram (Pleurotus Astreatus). Jurnal Pro-Stek Vol. 1 No. 2

Gafur, A & Dharma Utama, Satrio. 2020. Pengaruh Modifikasi Pipa Masukan Bahan Bakar Oli Bekas Berbentuk Spiral Terhadap Performansi Burner Tornado Api. Politeknik Negeri Bengkalis. Jurnal Teknik Mesin: Vol. 09, No. 3

Nursahid. 2021. “Pipa Schedule 40 dan 20 dan Penjelasannya” , https://www.cnzahid.com/2021/12/pipa-schedule-40-sch-20-tabel dan.html, (diakses pada 20 Juli 2023).

Irawan, Srya. & Susanti Ningsih, Sri.2022. Pembuatan Kompor Burner dengan Bahan bakar Oli Bekas Untuk Melebur Alumunium Bekas di Kampung Melayu Timur Kecamatan Teluk Naga Tangerang. Universitas Asahan. Vol. 6 No. 3

Jokosisworo, Sarjito. Studi Komparasi Pipa Sch 40 Galvanize Dengan Sch 40 Non

Galvanize Pada Sistem Pipa Ballast Dikaji Dari Segi Teknis Dan Ekonomis. Universitas Diponegoro

Fuadah, Nurul & Herry Suhardiyanto. 2012. Simulation Of The Air And Surface Temperature Distribution On The Floor Of Greenhouse By Using Computational Fluid Dynamics (CFD) [skripsi]. Institut Pertanian Bogor

Pradana,. Deri dkk. 2022. Pengembangan Produk Kompor Oli Bekas Dengan Mempertimbangkan Risiko Untuk Meningkatkan Efesiensi Biaya Produksi Baglog Jamur. Universitas Islam Majapahit. Vol. 1 No. 1

Sherlly Maulana. 2016. Pemanfaatan Computational Fluid Dynamics (CFD) Dalam Strategi Penelitian Simulasi Model Pada Teknologi Penghawaan Ruang. Universitas Medan Area. Vol 2 No.2

Nurcholis, Luthfi. 2008. Perhitungan Laju Aliran Fluida Pada Jaringan Pipa

Pratama, Annasruddin dkk. 2020. Rancang Bangun Kompor (Burner) Berbahan Bakar Oli Bekas. Universitas Negeri Semarang. Vol 19 No 2.

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Published

2024-05-22

How to Cite

Irvan Septyan Mulyana. (2024). ANALISIS ALIRAN UDARA PADA PIPA KOMPOR BURNER. Jurnal Teknik Dan Science, 3(2), 66–76. https://doi.org/10.56127/jts.v3i2.1532

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