Charge the thermal reserve
Chillers operate in cooler ambient conditions, freezing high-density sp.ICE modules inside a dedicated loop.
Next-generation thermal energy storage designed to shift heavy cooling loads from expensive daytime peaks to cooler night-time operation.
SYS / TES-03Running heavy central chillers during hot afternoon peaks is inefficient and expensive under SEC Time-of-Use pricing. sp.ICE shifts the cooling workload to cooler night hours.
Chillers operate in cooler ambient conditions, freezing high-density sp.ICE modules inside a dedicated loop.
Heavy chillers are throttled down or turned off while stored thermal energy supplies chilled water into building headers.
Advanced internal heat-exchanger spacing achieves high energy density per cubic meter, requiring less area than traditional steel or concrete tanks.
Pre-tested 10′, 20′, or 40′ ISO container structures support rapid deployment and avoid major foundation excavation.
Release stored cooling energy to buffer sudden manufacturing heat loads or midday data center cooling demand without drawing grid power.
Synchronize thermal storage with commercial rooftop solar networks and help manage changing solar production.
A closed thermal loop moves cooling production away from the Kingdom's most demanding daytime conditions.
Driving down PUE, maximizing delta T, and creating passive, zero-power thermal storage buffers to support uninterrupted Tier-compliant uptime.
Shifting heavy afternoon HVAC loads to off-peak night rates under SEC tariffs without impacting guest comfort.
Absorbing intense exothermic batch heat loads and process cooling shifts without oversized permanent chiller tonnage.
Securing SFDA-compliant thermal envelopes against high-ambient infiltration, moisture ingress, and compressor short-cycling.
Talk to Safe Hands about deploying sp.ICE thermal energy storage in your next project.
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