Perencanaan Pompa ESP Pada Sumur CNC-08 Untuk Meningkatkan Laju Alir Produksi

Authors

  • Michel Lee Sekolah Tinggi Teknologi Minyak dan Gas Bumi Balikpapan
  • Mohammad Lutfi Sekolah Tinggi Teknologi Minyak dan Gas Bumi Balikpapan
  • Rohima Sera Afifah Sekolah Tinggi Teknologi Minyak dan Gas Bumi Balikpapan
  • Afrida Afrida Sekolah Tinggi Teknologi Minyak dan Gas Bumi Balikpapan
  • Muhammad Imbron Sekolah Tinggi Teknologi Minyak dan Gas Bumi Balikpapan
  • Maharani Rima Sekolah Tinggi Teknologi Minyak dan Gas Bumi Balikpapan
  • Iin Darmiyati Sekolah Tinggi Teknologi Minyak dan Gas Bumi Balikpapan

DOI:

https://doi.org/10.53866/jimi.v2i4.84

Keywords:

Vogel, Pump Stage, HP Pump, efficiency

Abstract

Artificial Lift is a method used to enhance fluid pressure, enabling it to flow to the surface, particularly when the natural pressure of the well is insufficient. One type of Artificial Lift is the Electric Submersible Pump (ESP), which is inserted into the wellbore and operates using an electric motor to lift oil. This study aims to determine the optimal flow rate, the most suitable method for application, and the appropriate ESP pump design for the CNC-08 well. The well produces at a rate of 668.50 BPD, consisting of two liquid phases: oil and gas. The well data indicate that the bubble point pressure (Pb) exceeds the reservoir pressure; therefore, the two-phase Vogel method is applied to calculate the Inflow Performance Relationship (IPR). The ESP pump design results indicate an optimal flow rate of 774 BPD. The Vogel method is identified as the most appropriate approach. The recommended pump is the REDA AN900 type, with an efficiency of approximately 54%. The selected motor is a 540-series (30 HP, 435 volts, 45 A). The suitable cable type is 4 CU, while the transformer required is 2 x 25 KVA, and the switchboard type is DPH 2, size 72, type 3. Following the selection of appropriate components, a total voltage calculation was conducted. The results indicate a total voltage of 365.100 volts, which is lower than the available 435 volts. This confirms that the pump will operate effectively once installed. .

References

Adha, I. (2021). Reservoir di Lapangan Cipluk Kendal. Jurnal, 3(September), 39–50.

Ariadji, T. (2016). Esensi & fondasi perencanaan pengembangan lapangan (POD) migas (Vol. I). Bandung: ITB.

Brown, K. (1997). The technology of artificial lift methods (Vol. I). Oklahoma: PennWell Publishing Company.

Diba, A. F., Mukmin, M. N., & Afifah, R. S. (2023). Analisa lumpur pemboran terhadap swelling clay pada sumur “X” Lapangan “Affikah”. PETROGAS: Journal of Energy and Technology, 1(1), 46–56. https://doi.org/10.58267/petrogas.v1i1.151

Fitrianti. (2017). Perencanaan pengangkatan buatan dengan sistem pemompaan berdasarkan data karakteristik reservoir. Journal of Earth Energy Engineering.

Guo, A. G. (2007). Petroleum production engineering. USA: Elsevier Science & Technology Books.

Haniru, P. A. (2016). Optimasi produksi sumur "MA24" dengan perubahan artificial lift dari gas lift menjadi electrical submersible pump pada lapangan "SBL". Balikpapan: Sekolah Tinggi Teknologi Minyak dan Gas Bumi.

Malrin, E., Studi, P., Perminyakan, T., Tinggi, S., & Migas, T. (2022). Terhadap produksi reservoir multilayer. Jurnal, 4(September), 1–16.

Miftahul Huda, A. M., & Sahara, A. (2021). Penentuan sumber gempa lokal berdasarkan waktu tiba gelombang P dan S: Studi kasus Lengan Utara Pulau Sulawesi. PETROGAS: Journal of Energy and Technology, 3(2), 29–38. https://doi.org/10.58267/petrogas.v3i2.68

Musnal, A. (2012). Perhitungan laju aliran fluida kritis untuk mempertahankan tekanan reservoir pada sumur Ratu di Lapangan Kinantan. Journal of Earth Engineering.

Rubiandini, R. (2010). Artificial lift. Bandung: Institut Teknologi Bandung.

Ryka, H., Pratikno, F. A., & Battu, D. P. (2022). Aplikasi analytical hierarchy process (AHP) metode pairwise comparison untuk penentuan kawasan rawan banjir di Balikpapan Tengah. PETROGAS: Journal of Energy and Technology, 4(2), 42–50. https://doi.org/10.58267/petrogas.v4i2.103

Salfigo, R. F., Paindan, E. N., Studi, P., Perminyakan, T., Tinggi, S., & Migas, T. (2024). Prediksi pore pressure dan fracture gradient (PPFG) pada sumur HSN menggunakan pendekatan sumur RHN & FGO pada Lapangan Bunyu. Jurnal, 6(2), 1–10.

Sari, D. A., & dkk. (2016). Re-design electric submersible pump pada PT Chevron Pacific Indonesia - Minas Pekanbaru. Jurnal Ilmu dan Aplikasi Teknik, 25–33.

Widyanti, S. (2016). Evaluasi keberhasilan matrix acidizing dalam peningkatan produksi sumur Rama A-02 dan Rama A-03 pada Lapangan Rama-A. Prosiding Seminar Nasional Cendekiawan.

Wiyono, J., & Migas, T. T. (2024). Evaluasi jebakan stratigrafi pada lapisan reservoir sandstone dengan menggunakan data pre stack dan post stack seismik 3D. Jurnal, 6(2), 53–59.

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Published

2022-11-28

How to Cite

Lee, M., Lutfi, M., Afifah, R. S., Afrida, A., Imbron, M. ., Rima, M., & Darmiyati, I. (2022). Perencanaan Pompa ESP Pada Sumur CNC-08 Untuk Meningkatkan Laju Alir Produksi. Citizen : Jurnal Ilmiah Multidisiplin Indonesia, 2(4), 701–711. https://doi.org/10.53866/jimi.v2i4.84