This course will take a closer look at the equipment installed in and electrical installation. Safety, security, and reliability are the main attributes of all electrical equipment installed. It has to be well designed, installed, and commissioned. A well-planned maintenance regime is essential to ensure safe operations and trouble-free electrical operations.
Familiarize the parts of the electrical distribution system and identifying the planning process of the development of the electrical distribution system.
Access to the advantages and disadvantages of an underground electrical distribution system for the advantages and disadvantages of the air-power distribution system.
Enable participants to acquire the skills of installing transformers and cables
Understand how to use and operate the various parts of the underground electrical distribution system in a good manner
Anyone who works in the planning, design, construction, operation, maintenance or safety of electrical distribution systems in the distribution networks of facilities, or industrial, commercial, private networks, or with other institutions, engineers, technicians, designers, contractors, consultants, employees of extension of air networks, electrical technicians, inspectors, safety officers, and supervisors.
Electrical distribution systems and parts.
Planning and management considerations.
Antenna Systems Properties (costs, operating, performance).
Aerobic characteristics (safety, environmental and societal considerations).
Customer and service delivery terms and conditions.
Working arrangements with developers and contractors.
Industry standards, risk management, and individual safety.
Cost-recovery methods.
Cable properties and components.
Electrical and mechanical properties.
Types of connectors, insulators, and cable accessories.
Selection, specification, and load works.
Technical specifications and removing voltage.
Cable setup, cable connection equipment, and cable connections.
Selection and technical specifications.
Cable in underground fittings.
Direct burial trenches.
Internal pipes and inspection rooms above and below ground.
Cable lift Poles.
Composite transformer designs.
Selection specifications and installation work.
Protective equipment, fuses, and lightning rod.
Grounding systems, cable installation in pipes.
Restrictions on cable withdrawal, the accounts, and equipment of cable withdrawal.
Lightning rod over underground systems.
Nature of lightning and discharge dissipation.
The insulation of the Basic Insulation Level (BIL) system.
Organizing insulation, properties, and design lightning rod.
Choosing and using the lightning rod, and protection from overload increasing over underground systems.
Nature of load increasing.
Types and characteristics of faults.
Selecting and arranging the fuses.
National Electrical Safety rules.
Cable and cable accessories.
Equipment and grounding.
Planning and designing standards.
The prediction of the load, and the operating voltage.
Key, specifications, and components of the cutter payload.
Overload and protection against solicitation.
Protection against voltage increasing.
Dividing residential areas and cost estimate.
Operating and maintenance of underground systems.
Identifying and marking the location of the cable.
Processes of conversion and safety grounding.
Using cable faults indicators.
Using equipment for identifying cable fault location.
Drying the cable and injecting the insulation fluid.
Methods, standards, and software of cable replacement.
We all operate in an increasingly complex commercial and professional environment that requires us to negotiate on a daily basis not only with customers, clients, suppliers and contractors but also with managers, fellow employees, and colleagues within our own organization.
Pressure equipment such as boilers, pressure vessels, heat exchangers, pressure piping, and associated safety equipment are widely used in many industries (e.g., hydrocarbon processing, chemical, power, pharmaceutical, and manufacturing). Pressure vessels and piping store energy and potentially hazardous fluids and thus have inherent safety risks. Pressure equipment designs are performed in compliance with applicable Regulations, Codes, and Standards and follow sound engineering practices to ensure structural integrity and safeguard public safety. The design covers material selection, stress analysis, fabrication, testing, inspection, operation and failure analysis, codes, standards, and regulations.
ASME Plant Inspector Level 1 Course provides the fundamental principles of the inspection, assessment, and management of fixed pressure equipment. The content of the course is delivered in a systematic manner, from the inspection planning process to inspection practices and evaluation of the associated equipment. It is aimed at the upstream and downstream Petrochemical industry but is equally relevant to stakeholders from other sectors that utilize pressure equipment.
One of the most well-known IT management and governance frameworks is COBIT 5 Foundation. The framework is adaptable to all organizations of any size.
In addition to giving you an advantage over your peers in terms of professional growth, COBIT 5 offers internationally recognized principles, practices, tools, and models to assist boost the trust and value in IT.
This training offers insights into the world of corporate finance, risk, and governance. Capital markets are central to the globalization phenomenon and essential for a well-functioning society. Because of this centrality and essential nature to societies, focus and attention must be paid to their proper functioning and oversight. To that end, this program offers an overview of the interaction between management and all other stakeholders. Diverse and complex stakeholder demands are best met by an efficient allocation of resources over an extended period.
This program will provide the participant the know-how to: Understand Strategic alliances; Management system needs of Strategic alliances; Causes of Failure of Alliances; Determining the suitability of a proposed alliance