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Heat Balance of MSF Desalination Plants

Our Ration for the course : 4.7 Start Based on 56 users

Measured Parameters from Control Room / Steam Temperature & Pressure to Brine Heater

Performance Relation (PR) Evaluation / Operation and Troubleshooting Schedules

Evaluation of Gain output Ration (GOR) and Recovery Ration (RO) in Operation

Condenser Design for Energy Consumption / Ejector Economical Energy consumption

Brine pool characteristics to minimize Energy Consumption / Proper Demister Configuration

Water Chemistry in relation to Energy Transfer / System Overall Energy Analysis

Thermodynamics and Energy Calculation Schemes / Efficient Energy Transfer through MSF System

Introduction to Desalination

Heat Transfer Background in MSF Plants / Energy Auditing Technologies

Vacuum Values in Different Stages / Steam Pressure and Temperature to Deaerator

Name of Course Scheduled Dates Vanue Registration Link
Heat Balance of MSF Desalination Plants To be determined Abu Dhabi, UAE Registration Now
The Multi-Stage Flash (MSF) plants are the majority of desalination plants in the Middle East. MSF plants in the Middle East are currently producing over 70% of the total world capacity of land-based desalting. The MSF process is used in large-scale distillers to produce potable water from seawater. In essence, the process involves heating seawater to a high temperature then passing it through a series of chambers (or stages) where the pressure and temperature are reduced progressively. This process causes the sea water to boil at each successive stage. The vapor thus released is condensed and collected as distilled water. The process of boiling by pressure reduction is known as "flashing".
Upon successful completion of this course, the participant would be able to know : - - Background information for MSF System - Energy Auditing Methodologies - The system components of MSF Plants - The system performance and energy consumption at part load
Learning Level:  
Intermediate
Duration:  
3 days
Upon successful completion of this course, the participant would be able to know : - - Background information for MSF System - Energy Auditing Methodologies - The system components of MSF Plants - The system performance and energy consumption at part load - Introduction to Desalination - Heat Transfer Background in MSF Plants - Energy Auditing Technologies - Thermodynamics and Energy Calculation Schemes - Efficient Energy Transfer through MSF System - Water Chemistry in relation to Energy Transfer - System Overall Energy Analysis - Brine pool characteristics to minimize Energy Consumption - Proper Demister Configuration - Condenser Design for Energy Consumption - Ejector Economical Energy consumption - Evaluation of Gain output Ration (GOR) and - Recovery Ration (RO) in Operation - Performance Relation (PR) Evaluation - Operation and Troubleshooting Schedules - Measured Parameters from Control Room - Steam Temperature & Pressure to Brine Heater - Vacuum Values in Different Stages - Steam Pressure and Temperature to Deaerator - Ejector Section Steam Conditions and Flow rate - Pumping Power for the Different Pumps - Optimization Techniques for maximum system effectiveness - Effect of PH Value - Optimization of Energy Consumption - Unit Energy Cost - Analysis of MSF System Losses - Best Operation and Maintenance Strategies for - Optimum Energy Consumption -Fouling Effect on System Energy
Completion Certificate will be awarded after the training
  • doodles

    Water Plant Control Room Operators, Field Operators and Technical Staff

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