Performance drift causes a silent energy loss in every large-scale system, every year.
HVAC-R Performance Intelligence Platform
ClimaWISE detects 10–25% energy loss in HVAC-R systems caused by invisible performance drift.
We identify a unique thermodynamic fingerprint for each system and continuously analyze real operating behavior to detect deviations that indicate inefficiency, degradation, or suboptimal performance.
This fingerprint is translated into measurable performance insights that help operators reduce energy waste, improve system efficiency, and recover lost operational ROI.
Your system is performing.
Just not as intended.
The gap between a HVAC-R system's design intent and its actual operational output is known as performance drift.
Over time, this deviation leads to measurable inefficiencies in energy consumption, refrigerant performance, system wear, and maintenance costs.
Even well-maintained, A-rated systems experience performance drift. It is not a maintenance issue, but a system behavior deviation that standard monitoring systems are not designed to detect.
Annual waste per asset. These losses are typical for large vessels and buildings with high-capacity HVAC-R systems.
ClimaWISE detects refrigerant leaks with a loss of only 3%. Without active performance monitoring, most issues go unnoticed until a system failure occurs at 50% loss or more.
Traditional monitoring reads sensors to tell you what is happening. However, it never tells you whether that matches what should be happening based on your actual load and environment at that exact moment. That distinction is everything.
We don't read your sensors. We read your system.
ClimaWISE builds the thermodynamic fingerprint of your installation based on the actual physics of your system, your components, and your operating conditions. We monitor this continuously to show exactly where performance is being lost.
Real savings, calculated against a dynamic baseline that moves with actual conditions. Not a static before/after comparison.
Thermodynamic fingerprint
We build a real-time thermodynamic fingerprint of your HVAC-R system based on operating conditions and core performance indicators such as COP, EER, compressor behaviour, and condenser efficiency.
This fingerprint represents how your system actually performs under real-world load conditions.
Dynamic baseline
Instead of comparing performance to static design specifications, we continuously compare your system to its expected behaviour under current operational conditions.
This allows us to detect performance drift as it happens, not after failure or manual inspection.
Expert co-pilot
ClimaWISE includes an Expert Co-Pilot service that combines system intelligence with engineering expertise.
We work alongside your technical team to interpret performance drift and translate detected deviations into actionable operational recommendations.
Together, we help prioritize and execute improvements that restore efficiency and reduce energy loss.
One platform. Two worlds.
The thermodynamic laws are universal. Their expression on a superyacht crossing climate zones is different from a hospital running 24/7. We speak both languages.
The only honest way to measure savings.
Most efficiency claims are based on static before/after comparisons. But conditions change. If it's warmer in July than in April, your system will consume more energy, regardless of any optimisation. A static comparison attributes that to failure. A dynamic baseline corrects for it.
- ×Measure before and after
- ×Compare to factory specs
- ×React to alarms
- ×Periodic service visits
- ×Assumptions about savings
- Continuously measure, corrected for actual conditions
- Compare to the dynamic fingerprint of your system
- Detect drift before energy is wasted
- 24/7 monitoring between service visits
- Guaranteed evidence for ROI and ESG reporting
Stop the drift. Start the recovery.
Large-scale systems often consume over 200,000 kWh per month. Performance drift is an invisible tax on your operations. Let's calculate the recovery potential for your assets.
Engineered for high-capacity assets. Validated by physics.