Electrical Instrumentation & Maintenance Programmes

Specialized Courses in Electrical Instrumentation & Maintenance Programmes

Fundamentals of industrial process measurement

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This course is designed to provide participants the skill and knowledge in various devices used for measuring process variables.
- Pressure measurement - Temperature Measurement - Level Measurement - Flow Measurement
- Identify various devices used for measuring process variable. - Understand the constructional features and operational principle of the fundamental process variable devices.
Instrument engineers, technologists and technicians. For electrical engineers, technologist, technicians, and instrument operators who are working in oil establishment
N100,000 3 days Mar 5-7 Sept 3-5

Instrument Diagrams and Symbols

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This course is aimed at opening the trainee’s minds towards appropriate symbols used to represent different instrument and control techniques obtainable in the oil and gas Industry.
- Instrumentation and designations - Mechanical equipment with names and numbers - All valves and their identifications - Process piping, sizes and identification - Miscellaneous - vents, drains, special fittings, sampling lines, reducers, increasers. - Permanent start-up and flush lines - Flow directions - Interconnections references
- Identify various symbols used to represent various instruments - Understand and interpret instrument diagrams
Instrument engineers, technologists and technicians. For electrical engineers, technologist, technicians, and instrument operators who are working in oil establishment
N100,000 3 days April 16-18 Aug 1-3

Foundation of Fieldbus System

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This course is geared towards exposing the trainees to the working of a Foundation Fieldbus System and the use as a bi-directional communications protocol used for communications among field devices and to the control system in the oil and gas industry.
- General Introduction to Foundation Fieldbus System. - How Foundation Fieldbus is shifting the process of control strategy paradigm - Advantages of using the Foundation Fieldbus Technology - Foundation HSE Communication Methods - Power Supply Termination - Intrinsically Safe Fieldbus
- Understand a Fieldbus system - Understand Common Fieldbus Configurations - Understand Multi Master Redundancy and Device Type Manager (DTM)
Instrument engineers, technologists and technicians. For electrical engineers, technologist, technicians, and instrument operators who are working in oil establishment
N120,000 3 days May 2-4 Sept 3-5

Process Control Systems and Loop Tuning

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The main aim of this Process Control, Loop Tuning and Advanced Control Strategies course is to help trainees understand the technical concepts. This will enhance their skills with practical experience. This course will help trainees acquire knowledge on process control engineering concepts with lots of practical and computer aided problems for the better understanding
- Introduction to Process Control - Time Response - Transfer and Function - Open Control System - Closed Control Systems - Stability of Closed Loops - PID Control - Transducers and Sensors - Measurements and Sensors - Idea ID Vs Real PID - Cascade Control-
- Understand process control requirements - Manage open and closed process systems - Differentiate between Idea PID and Real PID - Understand process measurements
Instrument engineers, technologists and technicians. For electrical engineers, technologist, technicians, and instrument operators who are working in oil establishment
N120,000 3 days May 7-9 Oct 2-4

Instrument Maintenance, Repair and Calibration

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This course is designed to update participant’s knowledge and skill in maintenance and troubleshooting of electronic and process instruments
- Types of maintenance operations - organization of maintenance - Maintenance management - Maintenance management options - Maintenance planning and control - Shop tools and accessories - Test equipment and standards - Electronic instruments/equipment maintenance and repairs - Calibration of process instruments and stroking of control valves - Troubleshooting skills in instruments - Troubleshooting approaches - Maintenance of Laboratory instrument - Maintenance of Process Instruments (Control Valve, Transmitters, Regulators E.T.C.) - Troubleshooting scenarios
Understand maintenance and troubleshooting of electronic process equipment
Instrument engineers, technologists and technicians. For electrical engineers, technologist, technicians, and instrument operators who are working in oil establishment
N150,000 4 days April 2-5 Sept 17-20

Electrical machines maintenance

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This course is designed to provide participants with current and up-to-date knowledge of the working principles of Electrical Machines.
- Basic Principles: - Conductor in magnetic field - Generated E.M.F. flux linkage induce E.M.F - Torque and output power - Electromagnetic induction - Tum/Voltage ratios - +Load Condition. - Electrical Equipment Classification - Electrical Equipment Operation - Electrical Equipment Application
For Electrical/Mechanical Technicians Working in the Oil/Manufacturing Industries with appropriate background and working experience.
N100,000 3 Days March 5-7 May 7-9 October 22-24

Electrical maintenance management

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This course is designed for those with the responsibility of maintaining reliability and availability of electrical equipment in the organization. Participants will be exposed to practical current practices/principles in electrical maintenance management
- Development of maintenance. - General objectives of maintenance. - Maintenance operations - Maintenance procedure. - The need for a maintenance department. - Functions of a maintenance department. - Organogram of maintenance. - Maintenance Supervision. - Various types of maintenance activities. - Effective factors necessary for the selection of a - maintenance practice (policy). - The need to prepare maintenance schedule and programme for maintenance work. - The need for proper record keeping of maintenance work done. - The need to prepare ordering schedule for replacing and replenishing of materials and tools. - Distinction between maintenance and repairs. - Maintainability and its importance. - Identification of test instruments and equipment for different tests:- Insulation resistance test. - ! Dielectric strength test. - ! Murray loop test. - +The need to observe safety precautions during testing and - repairs. - +The need for specification, regulations and standards as - maintenance tools. - Method of carrying out the required test, repairs and maintenance on:- (i)Electrical machines. (ii) Transformer. (iii) Industrial equipment. e.g. compressors, pumps etc. (iv) Audio and Video systems. (v) Domestic appliances. - Electrical Installation repairs and maintenance. - Commissioning
- Understand general objective of electrical maintenance - Understand the principles of maintenance management - Understand the principles of record keeping and stocktaking. - Understand the use of test instruments and equipment.
Electrical Engineers, Technologists, Technicians, Mechanical Technicians and Technologists involved in the maintenance of Electrical Systems Equipment and devices.
N100,000 3 Days June 4-6 October 15-17

Electrical risk prevention

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To provide participants with the skills and knowledge to prevent electrical risks
- Concept of electricity - Classification of electrical materials - Direct current - Alternating current - 23 - Electrical faults - Protection measures for safety - Protection against electric shock - Protection against thermal effect of electric current - Testing and Inspection of electrical installation and - equipment - Importance of Earthing Test
- Know fundamentals of electrical risk prevention - Know basic safety requirement - Understand protective measures for safety - Know Regulations and Standards guiding electrical installation and equipment.
Maintenance and Safety Personnel, Electromechanical Personnel and individual that has priority for safety measures as it affects electrical installation and sets of equipment.
N100,000 3 Days June 25-27 October 8-10

Switchgear maintenance

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When switchgear malfunctions, the consequences are often catastrophic. Damage to the switchgear itself can be extremely expensive, but that pales in comparison to corollary damage and the potential hazards to people. Thus, implementing an effective switchgear testing, inspection, and maintenance program is essential. This training course is designed to provide participants skills to address these needs in an organization
- Electrical hazards and precautions - Statutory regulations and codes of practice - High voltage safety rules - Electrical safety documents - Operational features of switchgear - Circuit breakers – oil, gas, air and vacuum - - Auxiliary equipment - Primary conductors and switchgear enclosures - Switchgear maintenance - Battery supply units - Introduction to electrical faults and protection - Fault diagnosis
Understand the functional and operational requirements of HV/LV electrical switchgear
Electrical and mechanical personnel with a responsibility for the maintenance of HV/LV electrical switchgear
N100,000 3 Days April 9-11 November 5-7

Rewinding of electrical machines

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This training is designed to provide knowledge and skills in the trade to meet the standard performance of industry. Participants will be introduced to the various electric machines with reference to motors, alternators and transformers enabling them undertake repairs of electric machines particularly motors.
- Introduction - Classification of electric motors - Types of electric motor windings - Identification of burnt electric motors - Dismantling of motors - Measurement of conductors diameters - Preparation of slots and coils - Rewinding process - Binding the windings - Terminations - Tests - Vanishing.
At the end of the course the participant should be able to identify and rewind burnt electric motors
For electrical engineers and technicians in oil and manufacturing industries,
N100,000 3 Days May 21-23

Electrical installation and maintenance

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This training begins with the fundamental principles that always apply to ensure safety and provides participants with the knowledge and ability to install, alter, repair and maintain all types of electrical systems. It also covers the principles of hazardous area classification, explosion –protection techniques, equipment installation requirements, inspections, procedures for breakdown and maintenance with theory and practical components.
- Safety and safety regulations. - Electrical working diagrams. - Domestic Surface Wiring Techniques. - Domestic Conduit Wiring. - Protecting Electrical Devices. - Testing of Domestic Installations. - Ducts and Trunkings. - 24 - Types Of Cables, Sizes and Selection. - Electrical Machines And Equipment Installation And - Control Methods. - Simple Maintenance Methods.
- Understand electrical working diagrams. - Know different types of domestic surface wiring. - Know different types of domestic conduit wiring. - Understand the principles of protecting electrical devices - and install them. - Understand sequence for inspecting and testing domestic - installations.
Technicians, Maintenance Personnel and Workshop Personnel and Their Assistants.
N100,000 5 Days May 14-18 September 24-28

Flow measurement

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To provide a working knowledge of procedure for flow measurement.
- Physical Fluid Properties: - Definition - Fundamentals of Fluid Mechanics - Flow Pattern - Velocity of Flow equipment - Flow Measurement Techniques - Calibration of Flow Meters - Economics of Flow Measurement
- e aware of the principles and key features of the main types of metering systems in use within the natural gas industry - Understand the principles and practice of volume conversion - Understand the importance of correct calibration - Understand the principles of current maintenance and validation requirements - Appreciate the importance of flow calibration - Appreciate the impact of metering errors
Technicians/Operators involved in flow measurements in Petroleum/Allied Industries.
N150,000 3 Days March 5-7 August 27-29 October 3-5

Fundamental of electronics/applications

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That at the end of this course, participants would have thorough working knowledge of electronics including analogue and basic digital electronics. operational amps and application of power electronics in industrial drives
- Circuit Components - D.C Electronics - A.C. Electronics - Trouble Shooting of Digital Circuits -
- Understand electronic applications
Engineers, Technologist and Technicians in the Industries. Instructors, Technologists and Technicians in academic and research institutes.
N100,000 3 Days June 18-20 October 22-24

Instrumentation (Pneumatics) - Fundamentals

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This course provides maintenance personnel and production operators etc with fundamental skills and knowledge necessary to carry out maintenance tasks on pneumatic and electro-pneumatic systems.
- Definition pneumatic instrumentation - Explain the development and needs for pneumatics - instrumentation - List the equipment and devices needed for pneumatic - measurements and control system - Explain the construction and operations Nozzle flapper devices
- Define Instrumentation, classify instruments, list examples of - instruments scales and types of instrument errors. - Know the process variables and various methods of measuring - process variables - Know how to convert mechanical, electrical and electronic signals into pneumatic signals and vice-versa - Compare Pneumatic transmissions with mechanical, electrical and electronic transmission over other type of transmissions - Describe components of connections for pneumatic signals -
For Instrument Engineers, technologists and technicians. For Electrical Engineers, technologists, technicians, instrument operators who are working in oil establishment.
N120,000 5 Days March 19-23 July 2-6 October 15-19

Instrumentation (Pneumatics) - Advanced

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This advanced training course provides with the skills and knowledge necessary to carry out maintenance tasks on pneumatic systems.
- Describes the construction and operations of pneumatics relays - such as non –bleed and continuous bleeding relay - Describe the construction of force balance and motion balance - mechanisms respectively. Giving practical example of each and their application - Describe the construction and operation of: - (i) pneumatic proportional controller - (ii) pneumatic differentiator - (iii) pneumatic integrators and pneumatic proportion - plus integral controller and finally pneumatic PID - controllers - Pneumatic current – to – Air Converter - Differential Pressure Transmitters Force Balance - Pneumatic controllers, state types, principle and application - Describe the operation of the manual Auto Transfer Switch - Pneumatic recorders, construction, types and application - Pneumatic valves and actuators - Pneumatic valve positioners - Electro Pneumatic valve positioners - Pneumatic telemetry
- Describe the construction details and general features of pneumatics connections - Describe pneumatic control elements; understand the - operating principles of pneumatic control valves. - Describe the operating principles of pneumatic controllers - Describe pneumatic relays, pressure reducers' boosters and transmitters. - Know how to calibrate pneumatics instruments.
For Instrument Engineers, technologists and technicians. For Electrical Engineers, technologists, technicians, instrument operators who are working in oil establishment.
N100,000 3 Days March 26-28 July 9-11 October 22-24

Basic instrumentation and control

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This foundation-level course provides an overview of electrical systems, instrumentation, process control, and control/safety systems typically encountered in oil and gas facilities, such as: separation, gas dehydration, gas sweetening, NGL recovery, and associated facilities. The focus is to understand terminology, concepts, typical equipment configurations, control strategies, and common pitfalls in order to effectively manage and execute multidiscipline projects.
- Introduction and interpretation of Instrumentation - Pressure and Temperature - Electrical Temperature Measurement - Level Measurement
- Understand electrical systems, instrumentation and process control for oil and gas facilities
Instrument, Mechanical, Electrical Technicians and Technologists.
N100,000 3 Days March 12-14 May 7-9 October 8-10

Advanced instrumentation and control

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This course applies fundamental instrumentation and control engineering principles to oil and gas facilities design and operation, and is designed to accelerate the development of new facilities Instrumentation and Control Engineers. Through the use of individual and group problem solving, attendees will learn about field measurement devices, final elements and actuators, pressure relief and regulation, documentation, programmable logic controllers
- Field measurement devices including level, - pressure, temperature, and flow - Final elements and actuators including control loops, control valves, shutdown valves, actuators, and transducers - P&ID symbols and instrument tags, loop and logic diagrams, Pitfalls and best practices, ISA symbology, and creation of instrument and I/O Lists - Signal types and wiring requirements for analog/discrete inputs and outputs as well as other signals such as thermocouple, RTD, pulse, and digital - Typical control system functions, limitations, and architectures for PLC and DCS systems including programming and ladder logic - Process control basics with an emphasis on control loops, types, and configurations for common oil and gas process equipment such as separators, pumps, distillation towers, filters, contactors, compressors, heat exchangers, and fired heaters
- Understand electrical systems, instrumentation and process control for oil and gas facilities
Instrument, Mechanical, Electrical Engineers, Technicians and Technologists.
N100,000 3 Days April 9-11 September 24-26

Power System Protection

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This three-day course covers the fundamentals of power system protection, current best practice, protection system management and new developments in protection technology.
- Philosophy of protection - Power system components. - Protective schemes - Switchgear - Protection of feeders - Bus-bar protection - Transformer protection - Generator protection - Motor protection - Relay application tables
- Appreciate the need for power system protection. - List various types of protective schemes. - Explain the protection of power system components.
Electrical engineers Electrical technologists/instructors Electrical technicians Electrical consultants +Contractors.
N100,000 3 Days March April 23-25 August 1-3

Electronic instrumentation

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Electronic Instrumentation has come to acquire a great deal of significance as today, in our day to day lives we are increasingly using tools, appliances, and instruments which contain electronic components. This course empowers participants to provide professional skill and knowledge in this area
- General concepts of Instrumentation - Transducers and Transmitters - Signal Conditioning - Analogue Controllers - Digital Controllers - SCADA - Alarms Implementations - Fieldbuses
- Be able to choose transducers for specific applications - Be able to generate alarms - Understand the use of microprocessors and microcomputers in a control loop. - Understand the modern transmission systems
Engineers and Technicians in Oil, Gas, and Allied Industries as well as those in Manufacturing, Academic, and Research Institutions.
N120,000 5 Days April 9-13 October 22-26

Controllers and process control systems in the petroleum and allied industries - Fundamental

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An introductory course that provides participants with fundamentals in process control systems
- Introduction to Process Control Systems - Manual and Automatic Control Systems - Understanding Process Control System Terminologies - Understanding the Basic Characteristics of Control Systems - Implementing the Control Modes Using Pneumatic Systems - Implementing the Control Modes Using Electronic Systems - Introduction to Programmable Logic Control System PLC and Programmable Logic Devices -
- To get participants knowledgeable in the field of process - controllers. - (ii) To give basic understanding of the various control system available in the industry. - To acquaint participant with the knowledge of the various controllers available in the industry. - To introduce participant to Microprocessor and Micro controller. -
Production Engineers and Technologist (ii) Electrical/Electronic and Instrumentation Personnel in-charge of Installation and maintenance of facilities in production plants
N120,000 5 Days May 21-25 August 13-17 October 22-26

Controllers and process control systems in the petroleum and allied industries - Advanced

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An three days course that provides participants with advanced in-depth knowledge process control systems management in the petroleum and allied industries
- Microprocessor and Microcontrollers and their application in Process Control - Distributed Process Control System in the Industries - SCADA Controlled Systems
- To get participants acquainted with the knowledge of - programmable logic controllers and programmable logic - devices. - (vi) To get participant to learn about computer controlled and - supervised production system.
Mechanical, Petroleum Process and instrument engineers Plant Superintendents and Managers (v) Process plant operators (vi) Chemical, Pharmaceutical, Production plants operators, food processing plants, engineers, technologist and operators (vii) Instructors in the Universities, polytechnics and collages of education in the field of Electrical, Mechanical, Petroleum and Chemical Engineering etc.
N100,000 3 Days

Cable joining and termination

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This course is designed to ensure anyone attending is made familiar with the procedures involved in the installation of medium/high voltage cable accessories. The course is very much “hands on” but there is a degree of simple theory given to explain the workings of cables and accessories, why failures occur and ways of ensuring failures are kept to a minimum.
- Product design - Cable Construction and Preparation - Installation techniques - Understand manufacturers Installation instructions
- Apply the latest techniques in MV/HV cable splicing, joining, terminating and testing - Discuss cable joining and the different types of cables, insulation materials, termination and joints - Describe the construction of cables, conductor materials and configurations - Identify various types of cable connectors, materials and methods of connection - Apply the theory of joints and termination - Practice cable joining, splicing, testing and terminating
Electrical engineers, electrical staff, instrumentation control engineers, project engineers, maintenance engineers, power system protection and control engineers, data system planners, electrical and instrumentation technicians.
N100,000 3 Days April 16-19 September110-12

PLC Programming, Troubleshooting & Maintenance

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The course aims to enable technical personnel to understand the PLC system better, make basic modifications to the user control program and to troubleshoot quickly using both software and machine diagrams. Problem exercises are given and simulated with the aid of a PLC trainer. Aside the generic understanding of the PLC system, participants have the opportunity of product specific knowledge through hands-on practice using PLC hardware and software/simulators
- Identifying System and Software Components - Communicating with a PLC - Interpreting Project Organization and Execution - Creating Tags and Monitoring Data - Basic Ladder Logic programming - Editing Ladder Logic Online - Introduction to Structured Text, Function Block Diagrams and Sequential programming - Documenting and Printing Components - Searching for Project Components - Programming Add‐On Instructions - Starting a Ladder Diagram &Testing a Ladder Diagram - Programming Timer, Counter, Compare, Move and Math Instructions - Preventative Maintenance and Troubleshooting Strategies
- Understand the operational principle of a PLC. - Identify and describe the functions of the PLC system components - Carry out basic installation and operation of an Omron PLC system - Create a control Program in Ladder Diagram language; - Translate a ladder diagram program into electrical and logic circuits equivalent; - Effectively Carry out Basic Maintenance and Troubleshooting of PLC systems - Observe safe practices when working with PLC and its devices
Personnel involved in Operation, Installation, and Maintenance of PLC control systems.
N180,000 5 Days April 9 -13 November 12-16

PLC & SCADA for Automation & Process Control

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This course is designed to teach the student the knowledge required in industrial environments. This course will provide the necessary information for Plant Operation which involves process control.
- Introduction to Control Strategies - - Control Systems - Open Loop Control System - Closed Loop Control System - Modern Applications - Industrial Control Systems - PLC and RTU-Differences - PLC Basic - Requirements - Terminology - Inputs/outputs - Network Communications
- Be able to understand operation and technical terms used in a plant - Understand basic communication method - Be able to identify type of SCADA used - Be able to understand types of PLC and its functionalities
Craftsman, technicians, technologist, engineers and any person with a science background.
N150,000 5 Days May 21-15 August 27-31

Process control and instrumentation

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In order to meet the exacting demands of the oil and gas, mining, manufacturing and downstream processing industries, modern plants are equipped with systems and devices which are needed to measure and regulate variables such as temperature, pressure, flow, humidity, liquid level, velocity and density. This professional development course is designed to provide participants with critical knowledge and practical tools that can be immediately applied to the workplace
- Function, constitution, signal types. Tag naming conventions and symbolization on Piping & Instrument Diagrams (P&ID). - Control loop and Safety Instrumented Function (SIF). - echnologies to measure & detect the pressure, temperature, level, flow and weight. - Working principles and configuration parameters. - Selection criteria according to process needs. - Controller role and performance criteria. - ON/OFF and PID controller. - Controller tuning methodologies. - Introduction to advanced process control - Role, architecture and functions of a Distributed Control Systems (DCS). Separation of control and safety systems. - Introduction to Safety Instrumented Systems (SIS). Multiple safety layers principle.
- Be able to read and understand a P&ID - Be able to select optimal technology for sensors and valves, - Be able to increase control loop performance.
Managers, Engineers and technicians from process industries.
N200,000 5 Days June 4-8 September 17-21

Liquid and gas flow metering and custody measurement

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This course is designed to acquaint users with the problems and solutions for high accuracy transfer of liquid and gas petroleum products from supplier to customer.
- The laws governing fluids and gases - Important principles of flow-metering including accuracy and repeatability - Main types and applications of Flowmeters with emphasis on custody transfer - Flowmeter proving and calibration techniques - Custody transfer principles and applications
- Recall the basics of fluid mechanics - Identify the fundamental problems related to uncertainty - Compare the different methods of measuring flow in the oil and gas industries - Describe the various methods of level measurement - Compare the different methods used to derive strapping tables - Evaluate the different custody transfer standards in use today - Contrast the methods used in flow calibration
Any personnel who are, or will be, responsible for designing, selecting, sizing, specifying, installing, testing, operating, and maintaining instrumentation related to the field of custody level and flow transfer measurement. This could include facilities, process, chemical, electrical, instrumentation, maintenance, and mechanical engineers and technicians.
N150,000 3 Days July 9-11

Control valves, actuators and positioners

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Combinations of valves and actuators are used in just about every process around the world, and the proper understanding and utilization of them is crucial to efficient operations and control. This training course has been designed in such a way as to empower delegates to think practically about valve and actuator installations, in a manner that allows them to consider, select and install the best piece of equipment for the application at hand.
- Different types of valves, and their suitability to a variety of applications - Actuators, valve positioners, filters, regulators, I/Ps, and other associated hardware - Understanding the valve coefficient and determining the correct valve size and type - Valves in P&IDs, installation and maintenance considerations, and cavitation and noise control - Optimizing the use of control valves, using digital controllers
- Comprehend the inner operation of most commonly utilized valve types - Decide on the best valve to use, for specific applications - Determine the most cost-effective valve size - Determine the best device to drive and operate an assortment of valves - Get control valves to operate optimally in the field, using an assortment of techniques
Instrumentation personnel involved in valve maintenance, senior management and staff responsible for valve and actuator selection, mechanical and electrical staff that come into contact with valves, process control engineers, industrial engineers and staff responsible for plant safety and all personnel with a vested interest in applications that require/utilize valves
N120,000 3 Days July 16-18

Instruments, Power, Grounding and Isolations

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This three days course
- Power Quality - Reliable Power Supply - Power System Design & Installation - Power Conditioning - Grounding effect of mouse - Shield grounding - Isolation - Earth Resistance test for Instruments Location
Craftsman, technicians, technologist, engineers and any person with a science background.
N120,000 3 Days March 19-21 July 23-25