Chiller
Optimization
Recover lost cooling performance, identify hidden engineering losses and evaluate retrofit opportunities before investing in new equipment.

What Your Plant Is Trying To Tell You
Performance degradation is rarely caused by a single component. Small engineering deviations gradually increase operating cost, reduce reliability and move the plant away from its original design intent.
Rising Energy Bills
Higher electricity. Similar cooling demand.
Low ΔT
Flow imbalance reducing plant efficiency.
Capacity Reduction
Cooling demand no longer fully satisfied.

High Condensing Temperature
Heat rejection affecting compressor lift.
Control Strategy
Sequencing no longer matches plant behaviour.
Hidden Plant Losses
Pumps, towers and controls require engineering review.

RHYDAK ANALYSING
Plant Intelligence
Every optimisation project starts with one question.
"Where is the plant actually losing performance?"
Replacing equipment without understanding the complete cooling infrastructure often shifts the problem instead of solving it. RHYDAK evaluates the interaction between chillers, pumps, cooling towers, heat exchangers, controls and operating conditions before recommending any optimisation or retrofit strategy.
Recover performance before replacing equipment
Identify recoverable performance before capital investment.
Recommendations supported by engineering evidence
Recommendations based on operating behaviour—not assumptions.
Optimise the complete cooling infrastructure
Looking beyond individual equipment to improve total system performance.
Every component influences plant efficiency.
A chiller plant behaves as one thermodynamic system. Optimising individual equipment without understanding these relationships often shifts the problem instead of solving it.
Cooling Tower
ECWT
Compressor
Lift
COP
Cooling Efficiency
Plant kW/TR
Overall Plant Performance
Engineering before execution.
Every optimisation project follows a structured engineering workflow. Recommendations are based on measured performance and technical analysis—not assumptions.
Assess
Understand plant configuration and operating conditions.
Analyse
Evaluate thermodynamic and system-level performance.
Diagnose
Identify engineering constraints and performance losses.
Prioritise
Focus on opportunities with the highest technical impact.
Execute
Support implementation of selected engineering improvements.
Verify
Measure results against engineering objectives.
Optimise the plant.
Not just the equipment.
Chiller optimisation is not achieved by replacing individual components. RHYDAK evaluates chillers, pumps, cooling towers, controls and operating conditions as one integrated cooling infrastructure to identify the highest-impact engineering opportunities for improving efficiency, reliability and lifecycle performance.