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Efisiensi Perencanaan Pemasangan Electric Submersible Pada Analisa Pengaruh Gas Terhadap Kapasitas Pompa Sumur “A” Lapangan “R” Arief Rahman; Nurkhozin Adhi Nugroho; Ipan Swara
Jurnal Inovasi Global Vol. 4 No. 1 (2026): Jurnal Inovasi Global
Publisher : Riviera Publishing

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58344/jig.v4i1.502

Abstract

Pada awal produksi, sumur mengalir secara alami ke permukaan yang disebut natural flow, yang berarti bahwa tekanan yang terjadi disepanjang jalur aliran dari dasar sumur ke separator, ketika kriteria ini tidak terpenuhi, maka aliran fluida produksi akan berhenti dan dibutuhkan metode pengangkatan buatan yang biasa disebut artificial lift. Ada beberapa macam jenis artificial lift diantaranya ESP, SRP, HPU, PCP, dan gas lift. ESP dipilih sebagai artificial lift pada sumur “A” Lapangan “R” karena memiliki level fluida yang memungkinkan untuk digunakan pompa ESP dapat bekerja dengan dibenamkan dibawah level fluida, serta ESP mampu berproduksi dengan laju alir yang tinggi, ESP juga cocok untuk sumur directional, tidak memiliki masalah kepasiran, tidak memiliki masalah material abrasive, dengan laju produksi awal sebesar 249 bfpd, maka nilai pwf adalah 880 psi, dengan perforasi pada kedalaman 7876 ft, maka pompa diletakan pada kedalaman 7779, 37 ft, nilai pump intake pressure sebesar 306,486 psi, dengan turpin parameter pada natural gas separation sebesar 0,40, maka pengoperasian pompanya berhasil karena korelasi turpin nya kurang dari satu, jadi tidak perlu melakukan treathment lebih lanjut menggunakan rotary gas separator. Nilai total dynamic head sebesar 7282, 43 ft, denagan laju alir yang di desain sebesar 305,675 bfpd maka pompa yang dipakai adalah REDA D460N dengan jumlah stages sebanyak 182 stages dan horse power yang dibutuhkan sebesar 37,5 HP. Kabel yang digunakan adalah #1 AWG dengan panjang 7879,37ft.
the Testing of Polymer Parameters for EOR Applications in Carbonate Reservoirs in The AF Field with High Temperature and Salinity Agustina Prihantini; Nurkhozin Adhi Nugroho; Ananda Fevi Silvia
Jurnal Migasian Vol 8 No 1 (2024): Jurnal Migasian
Publisher : LPPM Institut Teknologi Petroleum Balongan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36601/jm.v8i1.298

Abstract

The AF field is one of the 34 candidates determined by the government to be able to carry out the EOR stage to extract unproduced oil residues with a water salinity value of 29400.39 mg/L resulting in an API value of 23. This field has a temperature of 82 ℃, where is said to be medium temperature. The method in this test is to use a laboratory scale by screening polymers by conducting tests to verify field data. This test has the goal of knowing the formula for making polymer and its stages, knowing the parameters of testing this polymer and knowing the results of this test with the various parameters tested. Screening carried out included a compatibility test with good results, namely having clear visuals and one phase, the viscosity obtained, which varied with viscosity versus concentration where if the concentration was high, the viscosity would also be high, and viscosity versus shear rate, namely where the shear rate decreased the viscosity went up, but in the tests I did at concentrations of 1000 ppm and 1500 ppm at speeds of 150 – 200 RPM there was an increase in the graphs due to air contamination with polymer and human error. At the screen factor testing stage, the results obtained are the higher the concentration and also the higher the viscosity, the time taken is also directly proportional. Whereas in the filtration test the data obtained was 1.02 at a concentration of 2500 ppm and a value of 0.80 at 2000 ppm, which is a good qualification or polymer screening, because the filtration ratio value must be below 1.2 and in the final stage, testing the thermal stability of the result is stable even though there is polymer degradation at 8.20%.
Optimization Of Electrical Submersible Pump Size To Increase Dr-01 Well Production Rate Of Field Puyuh Agustina Prihantini; Nurkhozin Adhi Nugroho; Dliya Ruhana
Jurnal Migasian Vol 9 No 1 (2025): Jurnal Migasian
Publisher : LPPM Institut Teknologi Petroleum Balongan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36601/jm.v9i1.339

Abstract

Abstract. The "DR-01" well is installed with an electrical submersible pump with the problem of decreasing production and based on tests conducted on December 13, 2014 the production of the "DR-01" well produced 171 bfpd with a water content of 96%. The electrical submersible pump operates with the Allen C1000ARC pump type and pump setting depth of 4592 ft, TDH 4268.58 ft, number of stages 94, frequency 50 Hz, HP 28, head/stage 24 with a pump efficiency of 20%. In planning the optimization of a good and correct electrical submersible pump it will produce a pump efficiency value of above 35%. To overcome these problems, it is necessary to perform optimization calculations on electrical submersible pumps by calculating IPR values using the Wiggins method, calculating SGf and Gf values, calculating SBHP and FBHP values, calculating PIP, calculating TDH and pump performance curves. After optimizing the DR-01 well, the results obtained are the type of pump Allen C680AR, the pump setting depth value is 4653.92 ft, the total dynamic head value is 4202.74 ft, the number of stages is 145 stages, pump frequency is 60 Hz, Qgross value is 500 bfpd, horse power is 19 HP , head.stage 29, and a pump efficiency value of 57%. Where the value of the pump efficiency is considered optimum.