The three elements (parameters) used are:
- Steam flow rate
- Feed water flow rate
- Water level in the drum
Each parameter transmits a signal proportional to its measured value.
- Steam flow and feed flow signals pass through individual square-root converters and are compared in a relay.
- The relay sends a signal to the controller only when steam flow and feed flow are in a 1:1 ratio.
- Once this condition is met, the controller compares the drum level signal (from a float level transmitter) with the setpoint.
- Based on the deviation, the controller sends an air signal to the feed water control valve, which opens or closes to maintain the desired water level.
As steam demand normalises, the saturation temperature rises, and bubble formation ceases, causing the water level to fall—known as the "shrinkage effect." Including steam flow and water flow, elements help counteract these effects, ensuring an accurate reflection of the true water level and allowing the feed water control system to respond appropriately.
The Proportional-Integral (P+I) controller misinterprets this as a higher water level and reduces the feed water flow by closing the feed control valve. This incorrect response leads to instability within the system and results in erratic water level indications.