Production Optimization and Minimizing Down Time

OBJECTIVES

After participate in this training, the participants will be able to:

  1. Summarize the state of the art of production optimization and minimizing downtime technology. In included the example problems to illustrate the use of various theoretical solutions, it also listed an overview of nodal analysis system
  2. Summarize the state of the art of production optimization and minimizing downtime technology. In included the example problems to illustrate the use of various theoretical solutions, it also listed an overview of nodal analysis system.
  3. Much material of this course has been published previously and is reassembled in this course. However, there is also a considerable amount of new material included that will assist the participant of the course in production optimization and minimizing downtime technology
  4. This course, it has also included example problems to illustrate the use of various theoretical solution. Wherever possible, it has not only discussed practical difficulties that one may encounter while using the theoretical solutions, but it has also listed some of the method that one can used to obtain the desired information. It also included description on field histories wherever they were available and trouble shooting for production optimization and minimizing downtime
  5. This course is mainly directed to the practicing professionals who deal with production optimization and minimizing downtime technology and field trouble shooting. For managers, the course helps to review the present state of the art. It also outlined some of new method in production optimization exist today. These gaps in technology will be useful for research engineers and research professionals determine the areas of future research

AUDIENCE

Operator / senior operator/ engineer / non engineer

OUTLINE

Production System Analysis

  • Nodal system analysis model
  • Nodal system analysis application

Reservoir Performance

  • Equations and inflow performance relationship
  • Real-time performance of oil wells
  • Performance prediction of oil wells
  • Real-time performance of gas wells
  • Performance prediction of gas wells
  • Effect of water production

Pressure Drop of Fluid Flow in Pipes

  • General equations and concepts
  • Fluid properties; density, compressibility factor, etc.
  • Well-flow correlations
  • Pipeline flow correlation
  • Chokes and valves pressure drop
  • Effect of velocity

Total System Analysis

  • Tubing design
  • Flowline size
  • Effect of stimulation
  • Chokes and valves
  • Effect of completion

Artificial Lift Method

  • Gas lift
  • Submersible pump
  • Sucker rod pump
  • Hydraulic pump

Nodal Analysis in Specific Field Application

  • Pressure drop calculation in steam line
  • Pressure calculation in injection wells
  • Pressure calculation in production wells
  • Total analysis approach

INSTRUKTUR

Team Konsultan PT Ganesha Inti Persada

WAKTU PELAKSANAAN

3 Hari (dimulai pukul: 09.00-16.00)

INVESTASI (Tidak termasuk biaya akomodasi & penginapan)

  • Rp. 11.000.000, - / peserta (Jakarta,Bogor)
  • Rp. 11.000.000, - / peserta (Bandung)
  • Rp. 12.000.000, - / peserta (Yogyakarta,Surabaya)
  • Rp. 14.000.000, - / peserta (Bali)
  • Rp. 14.750.000, - / peserta (Lombok,Batam,Makasar)
  • US$ 4780 / peserta (Malaysia)

FASILITAS

Lunch, sertifikat, Modul, Coffee Break, Training kit diselenggarakan di Hotel berbintang

INFO & PROMO

081296791324 (WA)

021-22830080

CONTACT PERSON

0811-996-1224 (WA)

0812-9679-1324 (WA)

Jadwal Training Online & OfflineTahun 2025:

Desember

  • 3-5 Desember 2025, Jakarta
  • 10-12 Desember 2025, Bandung
  • 17-19 Desember 2025, Surabaya
  • 22-24 Desember 2025, Yogyakarta

Jadwal Online & OfflineTahun 2026:

Januari

  • 5-7 Januari 2026, Semarang
  • 12-14 Januari 2026, Jakarta
  • 19-21 Januari 2026, Yogyakarta
  • 26-28 Januari 2026, Surabaya

Februari

  • 2-4 Februari 2026, Lombok
  • 9-11 Februari 2026, Bandung
  • 18-20 Februari 2026, Malang
  • 24-26 Februari 2026, Jakarta

Maret

  • 2-4 Maret 2026, Surabaya
  • 10-12 Maret 2026, Jakarta

April

  • 6-8 Maret 2026, Bandung
  • 13-15 Maret 2026, Bali
  • 20-22 Maret 2026, Yogyakarta
  • 27-29 Maret 2026, Jakarta

Mei

  • 4-6 Mei 2026, Surabaya
  • 11-13 Mei 2026, Jakarta
  • 18-20 Mei 2026, Yogyakarta

Juni

  • 2-4 Juni 2026, Bandung
  • 8-10 Juni 2026, Surabaya
  • 17-19 Juni 2026, Yogyakarta
  • 22-24 Juni 2026, Jakarta

Juli

  • 1-3 Juli 2026, Bandung
  • 8-10 Juli 2026, Surabaya
  • 15-17 Juli 2026, Semarang
  • 22-24 Juli 2026, Yogyakarta

Agustus

  • 3-5 Agustus 2026, Batam
  • 10-12 Agustus 2026, Jakarta
  • 18-20 Agustus 2026, Surabaya
  • 26-28 Agustus 2026, Bandung

September

  • 1-3 September 2026, Jakarta
  • 8-10September 2026, Bandung
  • 15-17September 2026, Yogyakarta
  • 22-24 September 2026, Surabaya

Oktober

  • 5-7 Oktober 2026, Semarang
  • 12-14 Oktober 2026, Bandung
  • 19-21 Oktober 2026, Yogyakarta
  • 26-28 Oktober 2026, Surabaya

November

  • 2-4 November 2026, Bali
  • 9-11 November 2026, Bandung
  • 16-18 November 2026, Yogyakarta
  • 23-25 November 2026, Jakarta

Desember

  • 1-3 Desember 2026, Surabaya
  • 8-10 Desember 2026, Jakarta
  • 15-17 Desember 2026, Bandung
  • 22-24 Desember 2026, Batam

Klik link form registrasi https://bit.ly/FormRegistrasiPTGIP

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