eldemuz logo

REGISTER FOR A COURSE

BUSINESS GOALS AND OBJECTIVES:

  1. To transfer knowledge at its best.
  2. To train consultant, engineers, managers, senior and junior staff in the oil and gas industry as well as fresh graduates and focused undergraduates.
 To provide Consulting Services to Oil Companies, Servicing Firms and I.T. Support for your ICT deployments.

oil field development studies

PROSPER (10 Days)  
PROSPER is a well performance, design and optimisation program for modelling most types of well configurations found in the worldwide oil and gas industry today. PROSPER can assist the production or reservoir engineer to predict tubing and pipeline hydraulics and temperatures with accuracy and speed. PROSPER'ssensitivity calculation features enable existing well designs to be optimised and the effects of future changes in system parameters to be assessed.   
PROSPER is designed to allow building of reliable and consistent well models, with the ability to address each aspect of well bore modelling viz; PVT (fluid characterisation), VLP correlations (for calculation of flowline and tubing pressure loss) and IPR (reservoir inflow). By modelling each component of the producing well system, the User can verify each model subsystem by performance matching. Once a well system model has been tuned to real field data, PROSPER can be confidently used to model the well in different scenarios and to make forward predictions of reservoir pressure based on surface production data.   
With PROSPER detailedflow  assurancecan  be  studied  at  well  and  surface  pipeline level. PROSPER provides unique matching features which tune PVT, multiphase flow correlations and IPR to match measured field data, allowing a consistent model to be built prior to use in prediction (sensitivities or artificial lift design).   

Production System Analysis

  1. Inflow performance models (IPR)s   
  2. Horizontal well with pressure drop in well   
  3. Multi-layer with pressure drop in well   
  4. Hydraulic fracture   
  5. Time dependant IPR   
  6. Multi-laterals   
  7. Dual porosity   
  8. Outflow   
  9. Pipe stability calculations   
  10. Proprietary well pressure drops model -   
  11. PVT - Oil, Gas, Condensate - Black Oil or Fully Compositional   
  12. Tubing and pipeline quality check   
  13. Sensitivity analysis  

  

Well Types   

  1. Gas, oil, water, condensate, steam, injection wells   
  2. Naturally flowing   
  3. Artificially lifted   
  4. Multi-layer   
  5. Multi-lateral   
  6. Angled and horizontal   

Artificial Lift System Analysis and Design   

  1. Electric Submersible Pump - ESP   
  2. Gas Lift   
  3. Hydraulic Pumps - HSP   
  4. Progressive Cavity Pumps - PCP   
  5. Jet Pumps   
  6. Beam Pumps - Rod   
  7. Design new artificial lift systems   
  8. Verify the efficiency of existing system.   

GAP        (6 Days)  

GAP is a multiphase oil and gas optimiser tool that models the surface gathering network of field production systems. When linked with the well models of PROSPER and reservoir models of MBAL a full field production optimisation and forecast can be achieved. GAP can model production systems containing oil, gas and condensate, in addition to gas or water injection systems.   
GAP's powerful non-linear optimisation engine allocates gas for gas lifted wells or sets wellhead chokes for naturally flowing wells to maximise revenue or oil/gas production while honouring constraints at any level in the system.   

    1. Multi-well optimization for artificially lifted and naturally flowing production networks:   
      1. Surface gathering system models with constraints  
      2. Looped networks  
      3. Gas and condensate gathering systems  
      4. Oil and water gathering systems  
      5. Injections networks  
      6. Compressor modelling   
      7. Pump modeling  

  

    1. Optimisation of gathering system against constraints:   
      1. Fast and robust Global Optimisation algorithm using non-linear programming (NLP) which has been recognised in the industry as best in class.   
      2. Wellhead chokes can be set, compressors and pumps optimised, and gas for gas lifted wells allocated to maximise production  
      3. Multiple Flowlines   
      4. Multiple Separators   
      5. Unlimited number of nodes - wells, reservoir, etc.  
      6. Field optimisation studies with mixed systems (ESP, GL, Naturally Flowing, PCP, Jet and Rod Pumps)   
      7. Optimise production forecasting  
    2. Pipeline Flow Assurance Studies   
    3. Reservoir Management   
      1. Models injection system performance, using MBAL or other numerical reservoir models   
      2. Advises on wellhead chokes settings to meet reservoir management targets   
    4. Fully Compositional from the Reservoir to the Process side  

Easy to use graphical interface for drawing system network (using icons for separators, compressors, pipelines, manifolds and wells, inline chokes and reservoir tanks) 

 

  1. PIPESIM-pipeline simulation, surface and sub-surface piping  simulation   (10 Days)  

      1. INTRODUCTION to pipesim  
      2. SINGLE PHASE FLUID MODELING-WATER, GAS OIL  
      3. WELL PERFORMANCE MODELING.  
      4. ARTIFICIAL LIFT DESIGNS.  
      5. SINGLE BRANCH PIPELINE AND FACILITIES  
      6. NETWORK MODELLING  

 

 


Plot 60 Aba Road, First Floor.
Port Harcourt Rivers State

&
48 lateef Aregbe street Okota ,
Lagos.
MOBILE: +234 803 881 2638,08064673745

GENERAL ENQUIRY:
eldemuz1@gmail.com
TECHNICAL ENQUIRY:
cemekah1@yahoo.com