Analisis Pengaruh Purifikasi Oli Transformator terhadap Tegangan Tembus Oli Tranformator

Authors

  • I Gede Loucian Cass Tanjung Universitas Pendidikan Nasional
  • I Wayan Dikse Pancane Universitas Pendidikan Nasional

DOI:

https://doi.org/10.61132/jupiter.v3i5.1061

Keywords:

BDV Test, Insulation, Oil, Purification, Transformer

Abstract

This study aims to analyze the effect of transformer oil purification on oil breakdown voltage and evaluate its benefits in maintaining transformer performance and reliability. Oil purification is a crucial preventive maintenance step to preserve insulation quality and prevent operational failures caused by reduced dielectric properties. The study was conducted through several stages, including data collection, oil purification, measurement of breakdown voltage before and after purification, and evaluation of results. Data collection involved measuring the oil’s electrical properties according to SPLN 49-1:1982 and observing results using a Break Down Voltage (BDV) test. Purification of a Trafindo 400 kVA transformer was performed through visual inspection, connecting the inlet and outlet hoses to the purification machine, and circulating the oil until the breakdown voltage met the required standards. Results indicated that the oil breakdown voltage before purification was below standard due to reduced insulation quality caused by water contamination, charcoal particles, thermal degradation, and dissolved gases that weakened dielectric properties. Additional factors such as electrical stress, mechanical stress, and excessive loading also contributed to insulation deterioration. After purification, the oil breakdown voltage increased significantly to meet the standard of >30 kV/2.5 mm, demonstrating that purification effectively restores the oil’s insulating capacity and supports optimal transformer performance. Analysis confirms that the transformer oil remains suitable for use, and routine annual purification is recommended to maintain reliability, efficiency, and operational performance. This study highlights oil purification as an effective preventive measure for transformer stability, extending operational life, and reducing the risk of insulation failure. The findings provide valuable guidance for transformer maintenance in the electricity industry, ensuring safe and optimal long-term operation.

References

Abasana, I. G. K., & Teresna, I. W. (2013). Treament oli trafo terhadap peningkatan tegangan tembus pada trafo distribusi KA 756 By Pass Ngurah Rai. Buletin Fisika, 14(2), 36–46.

Ambabunga, Y. A. M., Masiku, H., & Sampetoding, E. A. M. (2021). Karakteristik transformator 3 fasa (hubung bintang dan delta) pada sistem tenaga listrik AC. Journal Dynamic Saint, 6(1), 12–18. https://doi.org/10.47178/dynamicsaint.v6i1.1195

Harahap, P., Adam, M., & Prabowo, A. (2019). Analisis penambahan trafo sisip distribusi 20 kV mengurangi beban overload dan jatuh tegangan pada Trafo B1 11 Rayon Tanah Jawa dengan simulasi ETAP. Teknik Elektro, 1(2), 1–8. https://doi.org/10.30596/rele.v1i2.3002

Mubarok, H. K. (2023). Analisis pengaruh purifikasi (filtering) terhadap kualitas tegangan tembus minyak transformator. JETI (Jurnal Elektro dan Teknologi Informasi), 2(1), 1–6. https://doi.org/10.26877/jeti.v2i1.110

Persyaratan Umum Instalasi Listrik (PUIL 2000). (2000). Standar Nasional Indonesia SNI 04-022.

Purba, J. H., & Safriandi, M. S. (2024). Analisis nilai tahanan isolasi dan tegangan tembus pada minyak transformator 150 KV sebelum dan sesudah purifikasi di PT Energi Listrik Batam. Jurnal Integrasi, 16(2), 198–202. https://doi.org/10.30871/ji.v16i2.8233

Rezki, A., Wijaya, T. K., & Irsya, M. (2018). Analisa pengujian resistansi tegangan tembus pada oli transformator 5.000 KVA di PLTMG PANBIL. Sigma Teknika, 1(2), 122–132. https://doi.org/10.33373/sigma.v1i2.1497

Sandi, D. (n.d.). Analisis metode purifikasi dalam mendaur ulang minyak trafo di lingkungan PT. PLN (Persero). [Nama Jurnal/Prosiding].

Sigit, P., Sukamdi, T., & Karnoto, K. (2019). Analisa pengaruh pembebanan terhadap susut umur transformator tenaga (Doctoral dissertation, Universitas Diponegoro).

Simoes Frangino, S. M., & Gatut, B. (2024). Analisa pengaruh ketidakseimbangan beban terhadap arus netral dan losses pada trafo distribusi di EDTL, E.P. Jurnal Ilmiah Research Student, 1(3), 90–103.

Siswanto, A., Rohman, A., Suprijadi, S., Baehaqi, M., & Arifudin, A. (2022). Analisis karakteristik minyak transformator menggunakan pengujian dissolved gas analysis (DGA) pada IBT 1 Gardu Induk. Foristek, 12(1), 30–42. https://doi.org/10.54757/fs.v12i1.142

Suadi, A. P., Widharma, I. G. S., Budiada, I. M., & Sumertayasa, I. M. (2023). Treatment oli trafo terhadap peningkatan tegangan tembus pada trafo distribusi KA 1451 di penyulang Banteng. [Nama Jurnal/Prosiding], 1(1), 36.

Tondok, Y. P., Patras, L. S., & Lisi, F. (2019). Perencanaan transformator distribusi 125 KVA. Jurnal Teknik Elektro dan Komputer, 8(2), 83–92.

Umar, A. P., Hulopi, S., & Amali, L. M. K. (2023). Analisis karakteristik tegangan tembus isolasi minyak transformator menggunakan oli sepeda motor Shell Advance 20w-50 dan Pertamina Mesran 20w-50. Jurnal Informasi, Sains dan Teknologi, 6(1), 9–18. https://doi.org/10.55606/isaintek.v6i1.79

Zulhajji, Z., Haripuddin, H., & Rahman, M. F. (2023). Analisis pengaruh purifikasi oli transformator terhadap tegangan tembus transformator distribusi. Jurnal Media Elektrik, 20(2), 135–138. https://doi.org/10.59562/metrik.v20i2.5539

Downloads

Published

2025-09-10

How to Cite

I Gede Loucian Cass Tanjung, & I Wayan Dikse Pancane. (2025). Analisis Pengaruh Purifikasi Oli Transformator terhadap Tegangan Tembus Oli Tranformator. Jupiter: Publikasi Ilmu Keteknikan Industri, Teknik Elektro Dan Informatika, 3(5), 63–77. https://doi.org/10.61132/jupiter.v3i5.1061

Similar Articles

<< < 1 2 3 4 5 > >> 

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