Design of Oil-Free Compressor in Compressed Air System PT Sanbe Farma Unit 1

Main Article Content

Destiny Khairyan Johan
Ali Mashar
Slameto Slameto

Abstract

This research is the development of a screw type compressor technology found in the utility system of PT. Sanbe Farma. This design aims to design a screw oil-free compressor focusing on solving problems that generally occur in a compressor, namely contamination between compressed air and oil. For this compressor, ISO Standard 8573-1: 2010 is used, and then the design results are compared with the simulation results that have been validated using the Aspen Hysys application. Several factors can affect the compressor's design, including the use of diameters in the pipe installation and the selection of the motor used to meet the demand for compressed air. The results of the theoretical design (simulation of Aspen Hysys software) show close values, so design is proven accurate and appropriate and can be applied. With a compressed air requirement of 0.0063 m3/s and a pressure of 8 bar, a compressor power of 72.7 kW and a motor power of 103 kW are required.

Downloads

Download data is not yet available.

Article Details

How to Cite
Johan, D. K., Mashar, A., & Slameto, S. (2023). Design of Oil-Free Compressor in Compressed Air System PT Sanbe Farma Unit 1. Fluida, 16(sp1), 46-52. https://doi.org/10.35313/fluida.v16isp1.5519
Section
Articles

References

[1] Brown, Royce N. 2005. Compressor: Selection and Sizing, 3rd edition. Elviser Science & Technology Books
[2] Holman, Jack. 2010. Heat Transfer Tenth Edition. New York: McGraw-Hill.
[3] Mrs. Bydlowski. 2010. Internasional Standard ISO 8573-1. Switzerland.
[4] Pritchard, Philip J. 2011. Fox and McDonald’s Introduction to Fluid Mechanics 8th Edition. John Wiley & sons, inc.
[5] Syamsuri, Tresna. 2021. Analisis Penggunaan Variable Speed Drive (VSD)pada Motor Kompresor. ELPOSYS: Jurnal Sistem Kelistrikan.
[6] Sularso, Tahara, Haruo. 2000. Pompa dan Kompressor, Pemilihan, Pemakaian dan Pemeliharaan. PT. Pradnya Paramita
[7] Sullivan, Wicks dan Koelling. 2015. Engineering Economy Sixteenth Edition. Pearson Higher Education
[8] Guidelines On Good Manufacturing Practice. Indonesia : National Agency of Drug and Food Control
[9] Yanuar, Faisal. 2016. Pemilihan Kompresor Pada Instalasi Udara Bertekanan Sistem Pneumatik Hidrolik di Pressure Tank Line Indoor PT. PJB Unit Pembangkit Brantas. Surabaya : Institut Teknologi Sepuluh Nopember
[10] Improving Compressed Air System Performance. U.S. Department of Energy Energy Efficiency and Renewable Energy.