Introduction
Fluid flow control is a critical aspect of process industry operations, directly influencing efficiency, safety, product quality, and system stability. Effective control of liquids and gases ensures optimal performance of pipelines, reactors, and processing units.
This program, designed by Global Horizon Training Center, equips participants with the technical knowledge and practical skills required to understand, design, and manage fluid flow control systems in industrial processes.
Course Objectives
By the end of this program, participants will be able to:
- Understand principles of fluid flow and control mechanisms
- Identify and select control devices such as valves, pumps, and regulators
- Analyze flow behavior and system dynamics
- Apply control strategies for stable and efficient operations
- Integrate instrumentation and control systems
- Troubleshoot flow-related issues
- Optimize system performance and energy efficiency
- Ensure safe and reliable operation
Target Audience
This program is designed for:
- Process and Chemical Engineers
- Mechanical and Piping Engineers
- Instrumentation and Control Engineers
- Maintenance and Operations Personnel
- Oil & Gas and Industrial Professionals
- Technical staff involved in fluid systems
Outline
Day 1: Fundamentals of Fluid Flow
- Fluid properties (density, viscosity)
- Flow regimes (laminar, turbulent)
- Pressure and flow relationships
- Basic fluid mechanics concepts
- Industrial applications
Day 2: Flow Control Devices and Equipment
- Valves (control, relief, isolation)
- Pumps and compressors
- Flow regulators and controllers
- Selection and sizing of equipment
- Installation considerations
Day 3: Flow Measurement and Instrumentation
- Flow measurement techniques
- Sensors and transmitters
- Control loops and feedback systems
- Data acquisition and monitoring
- Calibration basics
Day 4: Control Strategies and System Integration
- Process control fundamentals
- PID control and tuning
- Integration with SCADA and automation systems
- System dynamics and stability
- Advanced control techniques
Day 5: Troubleshooting and Optimization
- Identifying flow-related problems
- Root cause analysis
- Performance optimization
- Energy efficiency improvements
- Case studies and real-world applications