HVAC Air Conditioning and Refrigeration Systems Operation and Maintenance

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HVAC Air Conditioning and Refrigeration Systems Operation and Maintenance
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O3666

Istanbul (Turkey)

03 May 2026 -28 May 2026

0

Overview

Introduction:

Heating, ventilation, air conditioning, and refrigeration systems represent critical infrastructure within industrial, commercial, and residential facilities. These systems regulate thermal comfort, indoor air quality, and process cooling through integrated mechanical, electrical, and control architectures. Effective HVAC operation and maintenance depend on structured system knowledge, component reliability frameworks, performance monitoring structures, and maintenance governance procedures. This training program represents HVAC system architectures, refrigeration cycles, operational control systems, preventive maintenance frameworks, and troubleshooting methodologies supporting reliable system performance and energy efficiency.

Program Objectives:

By the end of this program, participants will be able to:

  • Analyze HVAC and refrigeration system architectures within building mechanical environments.

  • Evaluate operational frameworks governing air conditioning and refrigeration performance.

  • Assess maintenance strategies supporting system reliability and efficiency.

  • Examine diagnostic structures used in HVAC troubleshooting and performance evaluation.

  • Explore energy efficiency and operational optimization frameworks within HVAC systems.

Target Audience:

  • HVAC engineers and technicians.

  • Facility maintenance supervisors.

  • Mechanical maintenance personnel.

  • Building services engineers.

  • Technical staff responsible for HVAC system operation.

Program Outline:

Unit 1:

Fundamentals of HVAC and Refrigeration Systems:

  • HVAC system purpose within building environmental control structures.

  • Thermal comfort principles within air conditioning system design.

  • Classification of HVAC system types within commercial and industrial facilities.

  • Refrigeration system concepts within cooling and temperature control systems.

  • HVAC system components within integrated mechanical infrastructures.

Unit 2:

Refrigeration Cycle and Thermodynamic Principles:

  • Vapor compression refrigeration cycle structures.

  • Refrigerant phase change thermodynamic processes.

  • Pressure temperature relationships within refrigeration systems.

  • Heat transfer mechanisms within HVAC equipment.

  • Refrigeration system efficiency principles within cooling processes.

Unit 3:

HVAC System Components and Equipment:

  • Compressors within refrigeration system architectures.

  • Condensers and heat rejection system structures.

  • Evaporators and cooling coil operational frameworks.

  • Expansion devices within refrigerant flow control systems.

  • Refrigerant piping and flow management structures.

Unit 4:

Air Handling Units (AHU) Operation:

  • Air handling unit system architecture within HVAC systems.

  • Air filtration and air quality management structures.

  • Cooling and heating coil operational frameworks.

  • Airflow distribution components within AHU systems.

  • Operational coordination between AHU components.

Unit 5:

Chilled Water Systems:

  • Chiller system architecture within central cooling plants.

  • Chilled water distribution system structures.

  • Cooling tower operation within heat rejection systems.

  • Pump circulation systems within chilled water networks.

  • Hydronic balancing frameworks within chilled water systems.

Unit 6:

Ventilation and Air Distribution Systems:

  • Ventilation system design within indoor air quality management.

  • Air duct network structures within HVAC distribution systems.

  • Air diffusers and airflow control components.

  • Static pressure and airflow balancing frameworks.

  • Fresh air intake and exhaust air system architectures.

Unit 7:

HVAC Control Systems:

  • HVAC automation architectures within building systems.

  • Temperature control and thermostat operational frameworks.

  • Sensors and monitoring devices within HVAC control systems.

  • Control logic structures within automated HVAC operations.

  • Integration of HVAC systems with building management systems.

Unit 8:

Preventive Maintenance Frameworks:

  • Preventive maintenance system structures within HVAC operations.

  • Maintenance scheduling frameworks for mechanical equipment.

  • Inspection structures within HVAC maintenance programs.

  • Lubrication and mechanical component maintenance frameworks.

  • Maintenance documentation and reporting systems.

Unit 9:

HVAC Troubleshooting Principles:

  • System fault identification frameworks within HVAC systems.

  • Operational symptom classification within mechanical failures.

  • Diagnostic structures for refrigeration system malfunctions.

  • Electrical fault identification frameworks within HVAC equipment.

  • Troubleshooting documentation and maintenance reporting structures.

Unit 10:

Compressor Operation and Maintenance:

  • Compressor operational characteristics within refrigeration systems.

  • Compressor lubrication and cooling structures.

  • Operational performance monitoring frameworks.

  • Failure mode classification within compressor systems.

  • Maintenance procedures within compressor reliability management.

Unit 11:

Refrigerant Management Systems:

  • Refrigerant classification and environmental considerations.

  • Refrigerant charging and recovery system structures.

  • Leak detection frameworks within refrigeration systems.

  • Refrigerant handling safety governance structures.

  • Regulatory frameworks governing refrigerant management.

Unit 12:

Electrical Systems in HVAC Equipment:

  • Electrical control circuits within HVAC systems.

  • Motors and drives within HVAC mechanical systems.

  • Protection systems for electrical components.

  • Electrical troubleshooting frameworks within HVAC equipment.

  • Electrical maintenance governance structures.

Unit 13:

Cooling Tower Operation and Maintenance:

  • Cooling tower system architecture within HVAC plants.

  • Heat rejection mechanisms within cooling towers.

  • Water circulation and distribution frameworks.

  • Cooling tower maintenance governance structures.

  • Water treatment frameworks within cooling tower systems.

Unit 14:

Pump Systems and Hydronic Networks:

  • Pump types within HVAC hydronic systems.

  • Hydronic distribution system frameworks.

  • Pump performance monitoring structures.

  • Cavitation prevention frameworks within pumping systems.

  • Maintenance governance structures within pump operations.

Unit 15:

Indoor Air Quality Management:

  • Indoor air quality parameters within HVAC systems.

  • Filtration technologies within air purification frameworks.

  • Ventilation control systems within air quality governance.

  • Humidity control within HVAC environmental systems.

  • Air contamination monitoring frameworks.

Unit 16:

Energy Efficiency in HVAC Systems:

  • Energy performance frameworks within HVAC systems.

  • Efficiency measurement indicators within cooling systems.

  • Energy optimization structures within HVAC operations.

  • Load management frameworks within building cooling systems.

  • Energy audit governance structures within HVAC environments.

Unit 17:

System Performance Monitoring:

  • HVAC operational performance monitoring frameworks.

  • Data collection structures within system performance evaluation.

  • Operational parameter analysis within HVAC equipment.

  • Predictive maintenance structures within performance monitoring systems.

  • Operational reporting frameworks within maintenance systems.

Unit 18:

Safety Systems in HVAC Operations:

  • Safety governance structures within HVAC environments.

  • Refrigerant safety classification frameworks.

  • Electrical safety procedures within HVAC maintenance environments.

  • Emergency shutdown frameworks within HVAC systems.

  • Occupational safety compliance within HVAC operations.

Unit 19:

Integrated HVAC System Troubleshooting:

  • System level fault analysis frameworks.

  • Integrated mechanical electrical fault identification structures.

  • Operational coordination frameworks within HVAC subsystems.

  • Maintenance decision frameworks within system troubleshooting.

  • System recovery governance structures within HVAC operations.

Unit 20:

HVAC Reliability and Maintenance Management:

  • Reliability engineering frameworks within HVAC maintenance systems.

  • Maintenance planning governance structures within facility management.

  • Asset lifecycle management frameworks within HVAC systems.

  • Maintenance performance indicators within mechanical systems.

  • Long term operational sustainability frameworks within HVAC infrastructure.