Rancangan Kapasitas Tangki Penyimpanan Udara Instrumen Pada Pabrik

Authors

  • Dinda Rizka Fadhillah Program Studi Teknik Kimia, Politeknik Teknologi Kimia Industri, Medan, Indonesia.
  • Sry Wahyuni Program Studi Agribisnis Kelapa Sawit, Politeknik Teknologi Kimia Industri, Medan, Indonesia.
  • Lely Pramesti Prodi Teknik Permesinan Kapal, Politeknik Perkapalan Negeri Surabaya, Surabaya, Indonesia.

Keywords:

Receiver, air, instrument, capacity

Abstract

The instrument air receiver plays a role in keeping the process in the factory running. The instrument air receiver is provided to supply the air needs for the operation of instrument equipment in the factory if there is a problem with the instrument air supply system. Before keeping in the instrument air receiver, instrument air is fed into several tools to be processed, including a filter, compressor, and dryer. This study was conducted to calculate the capacity of the instrument air receiver if the required instrument air flow rate is 70 Nm3/h. The receiver is designed with a residence time of 15 minutes and a maximum tank operating pressure of 9 barg to 5.5 barg. In calculating the receiver capacity, the flow rate is usually given a margin of 10% so that the working capacity of instrument air is 6 m3.

References

[1] D. Hardiono. “Analisis Supply Air Compressor terhadap Program Saving Energy di PT XXX”. Jurnal Teknik Mesin, Elektro, dan Ilmu Komputer, Volume 1, pp. 6-13, 2021.

[2] R. Kamaludin, et. al. “Material Selection of Proposed Air Receiver Tank Applied for Electrical Generator”. International Journal Innovation in Mechanical Engineering & Advanced Materials (IJIMEAM), Volume 4, pp. 81-85, 2022.

[3] A. Nurfaizi, et. al. “Sistem Monitoring Instrumen Air Sistem Berbasis Internet of Things di PT.Parna Raya”. Jurnal Rekayasa dan Teknologi Elektro, Volume 16, pp. 175-181, 2022.

[4] A. Nurrohman, et. al. “Perancangan Air Receiver Tank dan Kompresor untuk Kebutuhan Pigging di Jaringan Pemipaan Loading dan Unloading Crude Palm Oil” Prosiding Seminar Nasional Riset Teknologi Terapan, 2022, pp. 1-6.

[5] R. Poku, et. al. “Conversion of a Refrigerator Compressor into a Portable Silent Air Compressor for Use Onboard Vessels”. American Journal of Marine Science, Volume 5, pp. 9-17, 2017, DOI:10.12691/marine-5-1-2.

[6] U. M. Sugeng, et. al. “Perancangan Air Receiver tank Vertical Bertekanan 160 psi dengan metode VDI 2221”. Presisi, Volume 23, pp. 46-59, 2021.

[7] American National Standard. ANSI/ISA-S7.0.01-1996, Quality Standard for Instrument Air. North Carolina: American National Standard, 1996.

[8] The Engineering Toolbox. “Compressed Air Receivers”. Internet: https://www.engineeringtoolbox.com/compressed-air-receivers-d_846.html, 2005 [8 Juli 2024].

Published

2024-07-01

Issue

Section

Artikel Teknik Kimia

How to Cite

Fadhillah, D. R., Wahyuni, S., & Pramesti, L. (2024). Rancangan Kapasitas Tangki Penyimpanan Udara Instrumen Pada Pabrik. Jurnal Vokasi Teknik (JuVoTek), 2(2), 107-113. https://mentech.id/jurnal/index.php/juvotek/article/view/31

Similar Articles

You may also start an advanced similarity search for this article.