Training Hydrolic & Electrical Fundamentals

Training Operation Electric Submersible Pumping

training hydrolic & electrical fundamentals murah


This course is to summarize the state of the art of Electric Submersible Pump (ESP) technology. It included the example problems to illustrate the use of various theoretical solutions, it also listed an overview of conventional well productivity and Inflow Performance Relationship (IPR) technology and is general introduction to the latest methods of production optimization using ESP technology.

This course compiled as aid to engineers and production people in the Petroleum Industry who have the responsibility of planning and selecting electrically driven submersible pumping equipment. Included are fundamental principles involving sizing, operation and trouble shooting of submersible pump equipment. Also included are tables, data and general information which it will be value to everyone who utilize s submersible pumping equipment.

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 participants of the course  in their pump selection and operation.

Designing a submersible pump installation is not an exact science; it is mostly an art. But it is a talent which can be easily acquired if care and attention are paid to what the well is telling us, and what we want to do with the well. The well conditions vary from one well to other, but the basic information required for a design does not. What we require from a particular well must, of course, be within the limits of the well in question.

Submersible pump design provided information required for analyzing the behavior of a productivity well interval using rod pump. This thus makes it possible to answer some fundamental questions:

(a)     What is the well producing capacity?
(b)     What fluids do they produce?
(c)     At what flow rates?
(d)     What is the submersible pump to use?

In this course, it has also included example problems to illustrate the use of various theoretical solutions. 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 descriptions on field histories wherever they were available and trouble shooting using submersible pump.

This course is mainly directed to the practicing professionals who make engineering calculations and decision on submersible pump application and trouble shooting. For managers, the course helps to review the present state of the art. It also outlined some of new method in artificial technology exist today. These gaps in technology will be useful for research engineers and research professionals to determine the areas of future research.


Chapter 1      Hydraulic& Electrical Fundamentals

* Introduction
* Hydraulic Fundamentals
+ Density
+ Gradient
+ Specific Gravity
+ Viscosity
+ Pressure
+ Head
+ Pump Intake Pressure
+ Fluid Flow
+ Pipe friction

* Centrifugal Pump Hydraulics
+ Pump Thrust
+ Affinity Laws
+ Cavitation
+ Gas Locking
+ Hydraulic Horsepower
+ Brake Horsepower
* Well Performance
+ Productivity Index (PI)
+ Inflow Performance Relationship (IPR)
* Electricity Fundamentals
+ Electrical Power Distribution
+ Voltage
+ Current
+ Resistance
+ Ohm’s Law
+ Power
+ Frequency
+ Inductance
+ Capacitance
+ Impedance
+ Conductors
+ Insulators
+ Power Factor
+ Transformers
+ Cable
+ Motors
* Introduction
* Centrifugal Pump
* Rotary Gas Separator
* Seal Section – Thrust Bearing
* Electrical Submersible Motor
* Generalized Motor Composite Curves
+ Motor Composites Characteristic Curve (Loading)
+ Motor Composites Characteristic Curve (Voltage)
+ Motor Temperature Rise (Fluid Velocity)
* Motor Controllers
+ Switchboards
+ Soft Starter
+ Variable Speed Controller (VSC)
* VSC Effects on ESP Components
+ Centrifugal Pumps
+ Electric Motor
+ Matching Motor, Pump and VSC
+ Pump Shaft Limitation
+ Pump Housing Limitation
+ Vibration and WearMotor Efficiency
+ Motor Heating
+ Motor Insulation Starting
* Down hole Pressure and Temperature Monitors
* Transformer
* Junction Box
* Wellhead
* Check Valve
* Drain Valve
* Backspin relay
* Centralizer
* Cable and Cable Bands
* Motor Lead Extension

Chapter 2      Equipment Description

Chapter 3      Typical ESP Applications


Shrouded Configuration

Booster Pump

Direct Production-Injection-System

Horizontal Injection System

Cantle slopeâ Injection System

ESP Installation with Deep Set Packer

ESP Installation with “Y” Tool

Bottom Intake Booster Pump

Operation of Submersible Pumps in Harsh Environments

High Temperature Wells

Abrasive Well Fluids

Corrosive Well Fluids

Gaseous Production Fluids

High Productivity Pumps for Limited Diameter Wells

Cable for Harsh Environments

Chapter 4      Equipment Sizing

* Introduction
* Basic Data Required
+ Well Data
+ Production Data
+ Well Fluid Conditions
+ Power Sources
+ Possible Problems
* Sizing Procedure High-Water-Cut
* Sizing example : High-Water-Cut
* Effect of Viscosity on Centrifugal Pump Performance
* Sizing Procedure for Viscous Fluids
* Sizing Example: Viscous Fluids
* Sizing Procedure High GOR
* Sizing Example High GOR
* Sizing Procedure Variable Speed
* Sizing Example: Variable Speed

Chapter 5      Installation Maintenance and Trouble shooting

* Introduction
* Equipment Transportation
* Equipment Handling
* Well Preparation
* Installation of Down hole Equipment
+ Documentation
+ Motor Installation
+ Seal Servicing
+ Pump Assembly
+ Cable Installation
* Installation of Surface Equipment
+ Motor Controller
+ Transformers
* Starting           ESP
* Testing
* Data Gathering
* Re-running Equipment
* Economic Evaluation
* Failure Analysis
* Ammeter Technology
* Field Checkout
* ESP Troubleshooting Chart

Chapter 6      Engineering Data

* Electrical Terms and Definition
* Useful Formulas
* Relationships Regarding Flow and Pressure drops in Pipes
* Temperature Rise in Pumps
* Measurement for Water Flow
* Areas of Circles
* Conversion Factors
* Temperature Conversion Table
* Fundamental Unit of Length, Area, Volume and Mass
* Conversion Factors For Units of Energy
* Casing and Tubing Sized and Capacities
* Stretch of  Suspended Casing, Tubing or Drill Pipe
* Tubing Weight in Fluid
* Hydrostatic Head
* Well Temperature versus Current
* Absolute Viscosity of Gas-Free Crude Oil, Centipoises
* Absolute Viscosity of Gas-Saturated Crude Oil, Centipoises
* Pressure Loss Charts
* Flow Loss due to Friction in API. Pipe (U.S)
* Inflow Performance relationship Equations

Chapter 7      Installation, Operating And Trouble Shooting The Pump


Dr. Ir. Sudjati Rachmat, DEA was graduated from Petroleum Engineering Department of ITB in 1979 and hold Doctorate Degree with honored in 1987 from Ecole Centrale de Lyon I, France. The topic of his thesis is Modelisation Numerique d’Ecoulements Polyphasiques en Milieux Poreux. Application au Cas de Calcul des Champs de Pressions et de Saturations dans un Gisement de Petrole.

For the time being, he became a lecturer in Petroleum Engineering Department of ITB. His subjects are Analysis and Numerical Method, Engineering Mathematics, Computer Simulation, Fluid Mechanic, Artificial Intelligence for Petroleum Engineering.

He also gave many courses to the community, such as: basic reservoir engineering and reservoir simulation, basic production engineering, down hole well testing, statistic and numerical method for petroleum engineering, basic log interpretation, etc. He is a member of some profession organization such as: IATMI, SPE/EIME, IMA, HAIAI, FPS-USA, INAGA, and IGA.

Co-Instructor : Ir. Gilang Erlangga

Jadwal tahun 2020 :

21-23 Januari 2020

18-20 Februari 2020

17-19 Maret 2020

14-16 April 2020

16-18 Juni 2020

14-16 Juli 2020

11-13 Agustus 2020

8-10 September 2020

13-15 Oktober 2020

10-13 November 2020

15-17 Desember 2020

Jadwal tersebut dapat disesuaikan dengan kebutuhan calon peserta

Lokasi Pelatihan :

  • Yogyakarta, Hotel Dafam Malioboro (7.250.000 IDR / participant)
  • Jakarta, Hotel Amaris Tendean (7.750.000 IDR / participant)
  • Bandung, Hotel Golden Flower (7.750.000 IDR / participant)
  • Bali, Hotel Ibis Kuta (8.500.000 IDR / participant)
  • Lombok, Hotel Jayakarta (8.750.000 IDR / participant)

Investasi Pelatihan tahun 2020 ini :

Investasi pelatihan selama tiga hari tersebut menyesuaikan dengan jumlah peserta (on call). *Please feel free to contact us.

Apabila perusahaan membutuhkan paket in house training, anggaran investasi pelatihan dapat menyesuaikan dengan anggaran perusahaan.

Fasilitas Pelatihan di Diorama untuk Paket Group (Minimal 2 orang peserta dari perusahaan yang sama):

  • FREE Airport pickup service (Gratis Antar jemput Hotel/Bandara)
  • FREE Transportasi Peserta ke tempat pelatihan .
  • Module / Handout
  • FREE Flashdisk
  • Sertifikat
  • FREE Bag or bagpackers (Tas Training)
  • Training Kit (Dokumentasi photo, Blocknote, ATK, etc)
  • 2xCoffe Break & 1 Lunch, Dinner
  • FREE Souvenir Exclusive

Jadwal Pelatihan masih dapat berubah, mohon untuk tidak booking transportasi dan akomodasi sebelum mendapat konfirmasi dari Marketing kami. Segala kerugian yang disebabkan oleh miskomunikasi jadwal tidak mendapatkan kompensasi apapun dari kami.


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