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course | Thermal Power Plant Efficiency & Manpower Utilization on Production Strategy

Thermal Power Plant Efficiency & Manpower Utilization on Production Strategy course designed for professionals in UAE. Learn, apply, and get certified in

MEC-1461 | Thermal Power Plant Efficiency & Manpower Utilization on Production Strategy

Course Sector : Mechanical Engineering

Duration
Date from
Date to Course Venue Course fees Book a course
5 Days07/09/202611/09/2026Abu Dhabi$4,250 Book now
5 Days15/11/202619/11/2026Jeddah$4,250 Book now
5 Days29/03/202702/04/2027Zurich$5,950 Book now
5 Days14/06/202718/06/2027Dubai$4,250 Book now

Course Introduction

Thermal Plant efficiency is a key economic issue in the operation of thermal power plants. The efficient utilization of fuel in Electric Power Production is the main target of this course. Only by calculating and monitoring the efficiency we can determine whether it is cost-effective to continue operating or the plant requires cleaning or maintenance. In addition, different plant losses must be identified and understood, and traditional and innovative methods to decrease these losses taken. In as much as productivity is concerned in the development of any society, place, or industry.


Golden age
 

We are all tending towards that direction of effective and efficient productivity. Productivity, as the case may be, is the effective use of all factors of production; or each factor of production, which is defined as output to input. Recent years have seen widespread discussion of productivity, and for good reason. It appears that labour productivity growth has improved sharply, perhaps approaching the pace of the “golden age” of the new millennium. To put the importance of this recent change in perspective, consider the direct impact of productivity on machine and human effort. If labour productivity were to grow at 2.5% be output per hour will rise by 35% after 5 years. Clearly, the rate of productivity growth or the rate of productivity increase can have an enormous effect on real output and standard of living. 


Course objective

  • Learn the meaning and difference between Plant efficiency and Heat Rate in Power Plants.
  • Calculate the Overall Plant Efficiency and understand the Factors affecting its Performance.
  • Calculate Different Thermal Plant Component Efficiencies under Different Operating and Environmental Conditions.
  • Learn What Cycle Parameters Affect Efficiency
  • Calculate Part Load Efficiency.
  • Illustrate the Financial Benefits of increasing Efficiency
  • Illustrate efficiency improvement Options
  • Learn about innovative methods for minimizing heat losses.
  • Be skilled in dealing with difficult situations and people as they arise.
  • The main factors which are a direct Impact on Productivity in Machine and Human Effort.
  • The manpower Distribution and Manpower Utilization to reach to Optimization Conditions Always in the Plant. 

Course audience

  • Automotive Engineer
  • Boiler Engineer
  • Ceramics Engineer
  • Equipment Engineer
  • High-Pressure Engineer
  • Marine Engineer
  • Mechanical Design Engineer
  • Mechanical Engineer
  • Naval Architect
  • Pipeline Engineer
  • Power Engineer
  • Rotating Equipment Engineer
  • Senior Mechanical Engineer
  • Turbine Engineer
  • Validation Engineer

Course Outline | 01 DAY ONE

Module (01) Power Plants & Calculations of Efficiency
 

  • Types of Power Plants (GT, ST, CC & Cogeneration)
  • The Heat Engine and Energy Conversion Process
  • Definition of Efficiency and Heat Rate
  • Gas Turbine Plant Efficiency Calculations
  • Combined Cycle Plant Efficiency Calculations
  • Steam Power Plant Efficiency Calculations
  • Cogeneration Thermal Plants Efficiency Calculations 

Course Outline | 02 DAY TWO

Module (02) Factors Affecting the Efficiency (GT, HRSG)
 

  • Defining ISO Power and ISO Heat Rate, and Efficiency.
  • Correcting for Ambient Temperature, Altitude, Humidity, Inlet and Exhaust Pressure Losses, and Mechanical Transmission Losses
  • Methods of Increasing Power Output and Efficiency
  • Performance Evaluation of Different Inlet Air Cooling
  • Effect of Fouling on Compressor Performance
  • Compression Ratio
  • Inlet Firing Temperature
  • Turbine Exit Temperature
     

Module (03) Factors Affecting the Efficiency (Steam Plant)
 

  • Steam Cycles for Thermal Power Plants
  • Effect of Increasing Pressure on Efficiency
  • Effect of increasing Steam Temperature
  • Effect of changing condenser pressure
  • Economic Case Study
  • Effect of Parameters Deviation on Heat Rate & Efficiency
  • Effect of Out-of-Service Feed Heater on Plant Heat Rate 

Course Outline | 03 DAY THREE

Module (04) Effect of Steam Turbine Losses on Efficiency
 

  • Classification and components of turbines
  • Principle of Operation
  • Fluid Friction Losses
  • Leakage Losses
  • Techniques in Minimizing Leakage and Case Study
  • Moisture loss, Leaving loss, and Profile Losses
  • Blade path deterioration: steam turbine blade path Audit.
  • Performance improvement from Polishing of Turbine Blading.
     

Module (05) Boiler Efficiency Calculations/Improvements
 

  • Boiler Efficiency
  • Direct and Indirect Methods of Calculating Efficiency
  • Boiler Flue Gases Losses and methods of reduction.
  • Deterioration of burners and Repair
  • Blowdown requirements as a function of water quality
  • Blowdown losses, Heat recovery options, and economics.
  • Casing losses and thermography monitoring. 

Course Outline | 04 DAY FOUR

Module (06) HRSG Efficiency Calculations/Improvements
 

  • Efficiency and Effectiveness Definitions
  • Effect of Pinch Point
  • Higher Gas Inlet Temperature
  • Effect of the approach
  • Effect of steam temperature and pressure
  • Options to improve HRSG efficiency
  • Multiple-pressure steam generation
  • HRSG performance at different loads
     

Module (07) Effect of Condenser Operating Conditions
 

  • Steam Surface Condenser
  • Adverse consequences and operating concerns caused by low condenser vacuum
  • Effect of a change in condenser vacuum on the Turbine Steam Flow and Generator Output
  • Diagnosis of the actual causes of Poor Vacuum
  • Fouling Factors, Overall Coefficient of Heat Transfer
  • Which condenser design produces the Highest Thermal efficiency of the plant?
  • Problems, Limitations in Condenser Cooling System.
  • Effect of Inlet Cooling Water Temperature on Thermal Efficiency. 

Course Outline | 05 DAY FIVE

Module (08) Optimum Utilization of Manpower Energy
 

  • Potential Capacity / Committed Capacity
  • Labor Productivity and Total Productivity
  • Manpower Distribution/ Utilization
  • Productivity and Optimization Conditions
  • Total Resource Productivity (TRP) 
Course Certificates
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BOOST’s Professional Attendance Certificate “BPAC”

BPAC is always given to the delegates after completing the training course,and depends on their attendance of the program at a rate of no less than 80%,besides their active participation and engagement during the program sessions.

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