This program provides a detailed understanding of steam power plants, gas turbines, co-generation, combined-cycle plants, wind and solar power generating plants. Each of the components such as compressors, gas and steam turbines, heat recovery steam generators, deaerators, condensers, lubricating systems, instrumentation, control systems, transformers, and generators are covered. The design, selection considerations, operation, maintenance, and economics of co-generation plants and combined cycles as well as emission limits, reliability, monitoring, and governing systems will also be covered. The significant improvements that were made to co-generation, combined-cycle plants, wind and solar power generating plants during the last two decades will also be explained
Learn about components and subsystems of the various types of gas turbines, steam power plants, co-generation, combined-cycle plants, wind turbines and generators, wind turbine farms, and solar power generation
Examine the advantages, applications, performance, and economics of co-generation, combined-cycle plants, wind turbines and generators, wind turbine farms, and solar power generation
Learn about various equipment including compressors, turbines, governing systems, combustors, deaerators, feedwater heaters, transformers, generators and auxiliaries, wind turbines and generators, wind turbine farms, and solar power generating plants
Discover the maintenance required for gas turbines, steam power plants, combined cycles, generators, wind turbines and generators, and wind turbine farms to minimize their operating cost and maximize their efficiency, reliability, and longevity
Learn about the monitoring and control of environmental emissions
Discover instrumentation and control systems of gas turbines and combined cycles
Increase your knowledge of predictive and preventive maintenance, reliability, and testing
Gain a thorough understanding of the selection considerations and applications of co-generation, combined-cycle plants, wind turbines, and generators, wind turbine farms, and solar power generation
Power station operators, technicians, engineers, and managers
Electrical and mechanical engineers of different competency levels
Project engineers and project managers
Power station maintenance crew
Review of Thermodynamics Principles
Steam Power Plants
The Fire-Tube Boiler
The Water-Tube Boiler
The Steam Drum
Superheaters and Reheaters
Steam Turbines
Reheaters
Condensers
Feedwater Heaters
Efficiency and Heat Rate
Supercritical Plants
Co-generation Plants
Arrangement of Co-generation plants
Economics of Co-generation Plants
Turbine Types
Compound Turbines
Turbine Control Systems
Steam Turbine Maintenance
Steam Generators, Heat Exchangers, and Condensers
Power Station Performance Monitoring
The Turbine Governing Systems
Steam Chests and Valves
Turbine Protective Devices
Turbine Instrumentation
Lubrication Systems
Gland Sealing System
Frequently Asked Questions about Turbine-Generator Balancing, Vibration Analysis, and Maintenance
Features Enhancing The Reliability and Maintainability of Steam Turbines
Gas Turbine Fundamentals
Overview of Gas Turbines
Gas Turbine Design
Gas Turbine Calculations
Gas Turbine Compressors
Combined Cycles
Single-Shaft Combined Cycle Power Generating Plants
Economic and Technical Considerations for Combined Cycle Performance Enhancement Options
Dynamic Compressors Technology
Compressors Auxiliaries, Off-Design Performance, Stall, and Surge
Social media marketing is one of the most important digital marketing channels. Social media marketing uses social media platforms to create awareness about the product. Digital Marketing uses online and offline channels to promote products to the customer.
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.
The key to any successful operation lies in the effective management of risks; the ability to seize opportunities, minimize threats, and optimize results. However, risk management is too often treated as a reactive process, or worse, not done at all. In this Operations Risk Management and Mitigation training course, you’ll work through the proactive approach to both sides of risk: threats and opportunities. The approach applies a proven six-step methodology of risk planning through identification, analysis, and control.
Maintaining a high level of productivity in today's successful businesses takes work and continuous learning in a variety of management skills and techniques. To be successful in daily work tasks, knowledge, and skills in management techniques must be learned, practiced, and implemented. People in all types of organizations find themselves needing to find more productive methods of planning work and tasks, setting appropriate goals, using good interpersonal skills, and using effective means of making decisions. A focus on using productive practices allows for effective and efficient management of work and making changes in the organization.
The ASME Plant Inspector Level 1 training 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.
This intensive course covers the in-service inspection methodologies and requirements for piping, pressure vessels, and above ground storage tanks.