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Sabtu, 20 Maret 2010

GAS DEHYDRATION AND GLYCOL REGENERATION

GAS DEHYDRATION AND GLYCOL REGENERATION



Hyatt Regency Hotel, Bandung, Indonesia | April 13-16, 2010 | US$ 990,-/participant



 



Course Description



The natural gas industry has recognized that dehydration is necessary to ensure smooth operation of gas transmission lines. Dehydration prevents the formation of gas hydrates and reduces corrosion. Unless gases are dehydrated, liquid water may condense in pipelines and accumulate at low points along the line, reducing its flow capacity. Therefore, the removal of the water that is associated with natural gases in vapor form is one critical step in gas processing scheme. Several methods have been developed to dehydrate gases on an industrial scale. The three major methods are: direct cooling, adsorption and absorption. Glycol and methanol injection, glycol dehydration contactor, and glycol regeneration are important issues in gas production operations.



 



Course Highlights




  • Overview of the Production of Transportable and Salable Gas

  • Legal and Safety Requirements in Gas Fuel Market

  • Reservoir Fluid Type and the Hydrocarbon PVT Diagram

  • Prevention of Hydrate Formation and the Dehydration Processes

  • Hydrate Inhibitor and the Methanol and Glycol Injection

  • Injection System and the Low Temperature Separation

  • Dehydration in Contactor Column and Glycol Regeneration

  • Contactor and Regenerator Plant Operation and Controls

  • Glycol Conditioning and Glycol Losses Control

  • Plant Maintenance and Troubleshooting



 



Training Method, Materials and Program




  • The course will be delivered in the form of classroom exposition, case studies and open discussion. Course materials will be handed out as hard and soft copy.

  • The course will be given in Bahasa Indonesia.  In special case, upon request, it will be in English.

  • Actual field problems, which are about to bring to the course, will be presented and discussed in the class and shared to find recommendation as a specific solution. All participant documents should be treated as confidential.



 



Instructor



Hilman Ahmad & Associates, an Independent Consultant in industrial oil and gas, member of the Society of Indonesian Petroleum Engineers, who manage the Bandung Industrial Oil & Gas Education Center, and has been practicing production operation and corrosion control engineering in Indonesia for more than twenty-five years. He post-graduated from Tokyo Institute of Technology (sponsored by UNESCO) in 1977. He joined in-field-practice program at Nippon Kokan Steel Company & Research Center Kawasaki, Japan for production facility design & construction and corrosion prevention & control in 1983, and collaborated with Cormon Industrial Research Center Brighton UK for on-line corrosion monitoring development in 2000. He has been delivering training course in production operation and maintenance and corrosion control for personnel from Oil & Gas Company and Petrochemical Industry since 1979.






Training Venue



Hyatt Regency Hotel, Bandung






Registration Fee:




  • Registration Deadline: April 05, 2010

  • US$ 990,-/participant

  • US$ 880,-/participantfor 3 (three) or more than 3 (three) participants from 1 Company

  • Exclude accommodation






Fee includes the following:



Four-day registration fee for all Training sessions; Quality Training Material (Hardcopy and Softcopy); Quality Training Kits (Casio Calculator, T-Shirt, etc); Convenient Training Facilities at Stars Hotel; Refreshment and luncheons, Certificate of Completion.






Rabu, 17 Maret 2010

Surface Production System and Facilities

Surface Production System and Facilities



Melia Purosani Hotel Yogyakarta | April 5-8, 2010 | Rp. 7.250.000,-



Novotel Hotel, Batam | Jun 14-17, 2010 | Rp. 7.250.000,-






OBJECTIVES



After joining in this course, the Participants will be able and capable to:




  • Understand the basic concept of oil and gas handling processes and facilities, and how to operate this technology in field application.

  • Diagnostic of oil and gas reservoir performance under actual drive mecanism and future performance with current handling processes.

  • Analyze the production potential of reservoir under with actual handling system processes and to plan the better development processes according to reservoir capacity.

  • Understand the fundamentals of microscopic and macroscopic aspects and phenomena of oil and gas handling processes.


AUDIENCE



  • No specified (Operator/Sr. Operator/Engineer or Non Engineer)


COURSES OUTLINE



Gas Surface Production Operation and Equipments




  • Introduction to Gas Handling and Facilities

  • Gas Properties

    • Ideal gas

    • Real Gas

    • Gas Formation Volume Factor

    • Gas Compressibility

    • Gas-Water System

    • Gas-Condensate System



  • Gas Reservioir Performance

    • Reservoir Gas Flow

    • Gas Reserves

    • Well Completion Effect

    • Tight Gas Well

    • Gas Well Testing



  • Gas Piping System

    • Basic Flow Equation

    • Flow in Wells and Flow in Pipelines

    • Effect of Liquids

    • Use of Pressure Traverse Curve

    • Liquid Removal from Gas Wells



  • Gas Compression

    • Type of Compressors

    • Compressor Design

    • Centrifugal Compressor



  • Total System Analysis

    • Tubing and Flow Line Effect

    • Separator Pressure Effect

    • Compressor Selection



  • Flow Measuring

    • Orifice Metering

    • Metering System Design

    • Other Metering Methods



  • Gas Condensate Reservoir

    • Well Testing and Sampling

    • Gas Cycling



  • Field Operation Problems

    • Pressure Cumulative Production Plot

    • Hydrate Formation

    • Sour Gas Production

    • Corrosion Control With Inhibitors

    • Sulfur Deposition



  • Gas Processing

    • Field treatment of Natural Gas

    • Gas Plant Operation

    • Gas Dehydration

    • Gas Sweetening





Oil Surface Production Operation and Equipments




  • Oil Well Surface Production Equipment and Operation

    • Oil Well Equipment

    • Oil Well Production Operation

    • Well Automatic Safety Device



  • Oil Gathering System. Manifold and Flowline

    • Oil Gath ring System

    • Manifold e System

    • Flowline Sizing and Design



  • Crude Oil and Gas Separation

    • Separator and Principle of Separation

    • Design of Separator

    • Oil Dehydration



  • Principles of Measurement

    • Introduction to Measurement

    • Crude Oil Measurement

    • Gas Measurement



  • Well Test

    • Introduction

    • Responsibility for Test

    • Preparation for Test

    • Types of Well Test

    • Equipment and Procedures

    • Accuracy of Fluid Measurement

    • Problem in Testing

    • Type of Test



  • Artificial Lift Method

    • Gas Lift

    • Submersible Pump

    • Succker Rod Pump



  • Hydraulic Pump






Instructor
Dr. Ir. Drs. Herianto, MSc.



Dr.Ir. Drs. Herianto, MSc was graduated from Petroleum Engineering Dept. of ITB and got his MSC/DIC in Reservoir Engineering from Dept. Geology Imperial College (ICST) London at 1973.He has worked for about 36 years as lecturer at ITB and currently as Chairman of Dept. Oil and Gas ITSB Bandung, active as lecturer, he is also active as consultant for pipelines in Migas sector and  has  designed about 100 gas lift wells in Reservoir, Drilling, Production Operations and NGL.  He also designed Jet Pump for Kalimantan and also worked to supervise ESP and horisontal drilling for ZU and B structures and studied the reservoir in the areas.

Schedule




  • April 5-8, 2010

  • Jun 14-17, 2010



4 days



Venue




  • Melia Purosani Hotel Yogyakarta (April 5-8, 2010)

  • Novotel Hotel, Batam (Jun 14-17, 2010)




Tuition Fee

Rp. 7.250.000,- per participant, excluding accommodation & tax.