Technology brief
What this platform addresses
is a closed-loop industrial cooling system designed to replace conventional open evaporative cooling towers.
Energy Production
is a closed-loop industrial cooling system designed to replace conventional open evaporative cooling towers.
Technology brief
is a closed-loop industrial cooling system designed to replace conventional open evaporative cooling towers.
The challenge
Primary use cases:
Target industries: Power generation / Petrochemicals / Refining / Metallurgy / Healthcare infrastructure / Data centers
Typical project scale: 50 MWth to 2,000+ MWth heat rejection; modular units of 20–200 MWth
ARBOK solution
ARBOK-CoolTower is a closed-loop industrial cooling system designed to replace conventional open evaporative cooling towers. Unlike classic towers that continuously lose water through evaporation, aerosol drift and blowdown, CoolTower operates in a fully sealed recirculating circuit — water is filled once and never contacts open air. This eliminates evaporative water losses, aerosol emissions, and — critically — the biological habitat required for Legionella bacteria. The system delivers stable condenser temperatures independent of ambient water availability, making it viable for water-stressed regions, hot climates, and facilities facing environmental or sanitary restrictions on open cooling towers.
Heat from industrial processes or turbine condensers is transferred through closed heat exchangers into the CoolTower recirculating loop. The loop circulates continuously through thermal rejection modules — dissipating heat to the environment without open-air evaporation of cooling water. There is no spray, no aerosol, no open basin, and no contact between process water and atmosphere.
ARBOK-Sonar monitors water quality parameters 24/7. Any deviation triggers automatic protection or controlled shutdown. Water quality remains sterile by design — the closed environment eliminates conditions for biological growth (no standing warm water, no amoeba, no biofilm, no iron-rich open basin).
Market and application
Target markets: Water-stressed industrial regions — Middle East, North Africa, Central Asia, South Asia, Southern Europe, southwestern USA
Global market size: Industrial cooling market ~$15–20B globally; cooling tower replacement/retrofit growing due to water stress and Legionella regulation
Key drivers: Tightening water abstraction regulations, Legionella liability legislation, summer river temperature restrictions at nuclear/thermal plants, rising industrial water costs ($1–$4/m³)
| Parameter | Range |
|-----------|-------|
| Project size | 50–2,000+ MWth |
| CAPEX | $4–6M (vs. up to $10M classic) |
| OPEX | $0.10–$0.20M/year |
| Savings vs. classic (ΔT 16°C) | $5.1–$5.6M/year |
| Savings vs. classic (ΔT 35–37°C) | $11.0–$11.5M/year |
| Payback period | About 7 years — standard horizon for industrial cooling assets |
| Business models | Direct sale / Leasing / BOO |
Use cases
Primary use cases:
Target industries: Power generation / Petrochemicals / Refining / Metallurgy / Healthcare infrastructure / Data centers
Typical project scale: 50 MWth to 2,000+ MWth heat rejection; modular units of 20–200 MWth
Pre-installation: Thermal audit, heat balance analysis, condenser performance assessment, hydraulic integration engineering
Operating conditions: High-temperature climates, dust-exposed industrial sites, urban restricted zones, all-weather industrial duty
Operational workflow: Continuous closed-loop circulation → automated temperature regulation → 24/7 Sonar monitoring → periodic mechanical inspection
Personnel requirements: Plant operators + mechanical maintenance; reduced chemical treatment workload vs. open towers
Compatible systems: Steam turbine condensers, gas turbine combined-cycle plants, industrial heat exchangers, desalination heat rejection, district energy systems, ZLD water treatment
Monitoring / Automation: SCADA, PLC, Digital Twin, ARBOK-Sonar, predictive maintenance platforms
ARBOK-CoolTower is a closed-loop industrial cooling system designed to replace conventional open evaporative cooling towers. Unlike classic towers that continuously lose water through evaporation, aerosol drift and blowdown, CoolTower operates in a fully sealed recirculating circuit — water is filled once and never contacts open air. This eliminates evaporative water losses, aerosol emissions, and — critically — the biological habitat required for Legionella bacteria. The system delivers stable condenser temperatures independent of ambient water availability, making it viable for water-stressed regions, hot climates, and facilities facing environmental or sanitary restrictions on open cooling towers.
Primary use cases:
Target industries: Power generation / Petrochemicals / Refining / Metallurgy / Healthcare infrastructure / Data centers
Typical project scale: 50 MWth to 2,000+ MWth heat rejection; modular units of 20–200 MWth
Heat from industrial processes or turbine condensers is transferred through closed heat exchangers into the CoolTower recirculating loop. The loop circulates continuously through thermal rejection modules — dissipating heat to the environment without open-air evaporation of cooling water. There is no spray, no aerosol, no open basin, and no contact between process water and atmosphere.
ARBOK-Sonar monitors water quality parameters 24/7. Any deviation triggers automatic protection or controlled shutdown. Water quality remains sterile by design — the closed environment eliminates conditions for biological growth (no standing warm water, no amoeba, no biofilm, no iron-rich open basin).
| Parameter | Classic Wet Tower | ARBOK-CoolTower |
|-----------|-------------------|-----------------|
| Makeup water (ΔT 16°C, 10,000 m³/h) | 380 m³/h = $4.56M/yr | Zero |
| Makeup water (ΔT 35–37°C) | 870 m³/h = $10.44M/yr | Zero |
| OPEX (ΔT 16°C) | $5.30–$5.71M/yr | $0.10–$0.20M/yr |
| OPEX (ΔT 35–37°C) | $11.18–$11.59M/yr | $0.10–$0.20M/yr |
| Aerosol drift / plume | Yes — up to 300m | Zero |
| Legionella risk | Structural | Architecturally eliminated |
| Biocide treatments | Required annually | Not required |
| Water loss reduction vs. classic | — | 70–95% |
Additional specs:
Core modules:
Control & Monitoring: SCADA / PLC / Digital Twin compatible; remote monitoring; auto-halt on deviation
Modularity: Yes — 20–200 MWth per module; phased retrofit from legacy open towers possible
Technical: Zero evaporative water loss; stable condenser temperature during heat waves; no aerosol drift or visible plume; Legionella habitat architecturally impossible; no scaling concentration cycles; reduced fouling risk.
Economic: OPEX $0.10–$0.20M/year vs. $5.30–$11.59M/year for classic towers. Annual savings: $5.1–$5.6M (ΔT 16°C) and $11.0–$11.5M (ΔT 35–37°C). CAPEX $4–6M vs. up to $10M for classic. Payback about 7 years — the standard horizon for industrial cooling assets. Leasing and BOOM (Build-Own-Operate-Maintain) models available.
Environmental: 70–95% reduction in freshwater consumption; zero aerosol emissions; no Legionella or biological contamination risk; reduced chemical discharge; compliance with tightening water abstraction regulations.
Strategic: Protects plant output during summer heat waves when river cooling is restricted; eliminates Legionella liability (EU, UK, USA legislation); applicable to nuclear, thermal, and urban industrial sites.
Compatible systems: Steam turbine condensers, gas turbine combined-cycle plants, industrial heat exchangers, desalination heat rejection, district energy systems, ZLD water treatment
Monitoring / Automation: SCADA, PLC, Digital Twin, ARBOK-Sonar, predictive maintenance platforms
Pre-installation: Thermal audit, heat balance analysis, condenser performance assessment, hydraulic integration engineering
Operating conditions: High-temperature climates, dust-exposed industrial sites, urban restricted zones, all-weather industrial duty
Operational workflow: Continuous closed-loop circulation → automated temperature regulation → 24/7 Sonar monitoring → periodic mechanical inspection
Personnel requirements: Plant operators + mechanical maintenance; reduced chemical treatment workload vs. open towers
Current TRL: 4–6
Evidence: Concept engineering complete; economic modelling vs. classic towers validated; integration scenarios with thermal condensers defined
Completed milestones:
Next steps to TRL 9:
Target markets: Water-stressed industrial regions — Middle East, North Africa, Central Asia, South Asia, Southern Europe, southwestern USA
Global market size: Industrial cooling market ~$15–20B globally; cooling tower replacement/retrofit growing due to water stress and Legionella regulation
Key drivers: Tightening water abstraction regulations, Legionella liability legislation, summer river temperature restrictions at nuclear/thermal plants, rising industrial water costs ($1–$4/m³)
| Parameter | Range |
|-----------|-------|
| Project size | 50–2,000+ MWth |
| CAPEX | $4–6M (vs. up to $10M classic) |
| OPEX | $0.10–$0.20M/year |
| Savings vs. classic (ΔT 16°C) | $5.1–$5.6M/year |
| Savings vs. classic (ΔT 35–37°C) | $11.0–$11.5M/year |
| Payback period | About 7 years — standard horizon for industrial cooling assets |
| Business models | Direct sale / Leasing / BOO |
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