KALIBRASI TEMPERATURE GAUGE MENGGUNAKAN OIL BATH DI INDUSTRI KILANG

Authors

  • Dillon Diandri Politeknik Energi dan Mineral Akamigas
  • Farah Sukma Maulida Politeknik Energi dan Mineral Akamigas

DOI:

https://doi.org/10.53026/prosidingsntem.v5i1.634

Keywords:

drift analysis, kalibrasi, kilang minyak, oil bath calibrator, temperature gauge

Abstract

Kalibrasi temperature gauge merupakan aktivitas krusial dalam menjaga keandalan sistem instrumentasi di industri kilang minyak. Penelitian ini bertujuan menganalisis performa kalibrasi temperature gauge menggunakan oil bath calibrator untuk meningkatkan akurasi pengukuran. Metode eksperimental diterapkan pada 45 unit temperature gauge dengan rentang ukur 0-60°C menggunakan oil bath calibrator. Hasil penelitian menunjukkan mayoritas instrumen memenuhi toleransi setelah kalibrasi dengan peningkatan efisiensi waktu dibandingkan metode konvensional. Analisis drift menunjukkan korelasi kuat antara usia instrumen dengan laju penyimpangan. Implementasi oil bath calibrator memberikan payback period 1.17 tahun dengan benefit tangible mencapai Rp 240 juta per tahun. Kesimpulan penelitian adalah metode oil bath efektif untuk kalibrasi temperature gauge di industri kilang dengan peningkatan efisiensi dan akurasi yang signifikan.

References

C. J. Delker, E. C. Auden, and O. M. Solomon, "Calculating interval uncertainties for calibration standards that drift with time," Journal of the IEST, vol. 63, no. 1, pp. 29-37, 2020, doi: 10.17764/1557-2196-63.1.29.

WIKA Instrumentation, "Calibration bath or dry-well calibrator? Advantages and disadvantages," WIKA Blog, Sep. 2024. [Online]. Available: https://blog.wika.com/en/knowhow/calibrationbath-or-dry-well-calibrator-which-is-the-right-choice/ [Accessed: Sep. 15, 2024].

A. Kumar, S. Patel, and R. Sharma, "Impact of modern calibration equipment on plant reliability: A case study in petrochemical industry," J. Process Control, vol. 118, pp. 45-58, Sep. 2023, doi: 10.1016/j.jprocont.2023.08.012.

Thermo Electric Instrumentation, "Why regular calibration is critical for reliable temperature measurement," Technical Article, Jan. 2025. [Online]. Available: https://www.thermoelectric. nl/why-regular-calibration-is-critical-for-reliable-temperature-measurement/ [Accessed: Jan. 10, 2025].

Fluke Calibration, "Why did my temperature sensor fail calibration?" Technical Papers and Articles, May 2024. [Online]. Available: https://us.flukecal.com/literature/articles-andeducation/

temperature-calibration/papers-articles/why-did-my-temperature-sen [Accessed: May 20, 2024].

M. Singh, P. Johnson, and K. Williams, "Risk-based optimization of calibration intervals for process instruments," ISA Trans., vol. 142, pp. 234-248, Jan. 2024, doi: 10.1016/j.isatra.2023.12.015.

Beamex, "How to calibrate temperature sensors," Technical Blog, Sep. 2024. [Online]. Available: https://blog.beamex.com/how-to-calibrate-temperature-sensors [Accessed: Sep. 10, 2024].

Fluke Corporation, "Establishing correct calibration intervals," Technical Literature, Jul. 2024. [Online]. Available: https://www.fluke.com/en-us/learn/blog/temperaturecalibration/establishing-correct-calibration-intervals [Accessed: Jul. 15, 2024].

Mensor Corporation, "Deciding between calibration baths and dry well calibrators," Technical Blog, Apr. 2025. [Online]. Available: https://blog.mensor.com/blog/deciding-between-dry-wellsand-calibration-baths [Accessed: Apr. 5, 2025].

ISOBudgets, "How to calculate drift uncertainty," Calibration Guidelines, Aug. 2025. [Online]. Available: https://www.isobudgets.com/calculate-drift/ [Accessed: Aug. 20, 2025].

Downloads

Published

2025-12-29

How to Cite

KALIBRASI TEMPERATURE GAUGE MENGGUNAKAN OIL BATH DI INDUSTRI KILANG. (2025). Prosiding Seminar Nasional Teknologi Energi Dan Mineral, 5(1), 761-771. https://doi.org/10.53026/prosidingsntem.v5i1.634

Similar Articles

1-10 of 89

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