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Air Cooled Scroll Chiller 320-920 kW IDV Variable Capacity Zero Water Consumption R410A IEER 4.7 4.8

Air Cooled Scroll Chiller 320-920 kW IDV Variable Capacity Zero Water Consumption R410A IEER 4.7 4.8

Detail Information
Place of Origin
China
Brand Name
OEM;MIDEA
Certification
CB,ISO
Product Name:
Air Cooled Scroll Chiller
Cooling Capacity:
319.9-860 KW 340-920 KW
IDV Variable Capacity:
Standard
IEER:
4.7 4.8
Voltage:
380-415V/50Hz 380-415V/50Hz
Refrigerant:
R410A (GWP 2,088)
Climate Class:
T3 — Full Capacity At 55°C
Certifications:
CE, Eurovent, AHRI 550/590
Highlight:

Air Cooled Scroll Chiller R410A refrigerant

,

Variable Capacity Industrial Water Chiller

,

Zero Water Consumption Scroll Chiller

Product Description
Air Cooled Scroll Chiller 320-920 kW IDV Variable Capacity Zero Water Consumption R410A IEER 4.7 4.8
Zero Water, Maximum Efficiency – The Complete Environmental Equation

For energy managers evaluating total environmental impact, this air-cooled scroll chiller with IDV technology delivers class-leading electrical efficiency (IEER 4.7-4.8, up to 40% energy savings) combined with zero water consumption. In regions facing water stress – increasingly correlated with cooling demand – eliminating cooling tower water consumption provides strategic sustainability advantages beyond operational convenience.

The IDV (Independent Double Variable) system enables continuous stepless modulation from 12.5% to 100%, eliminating energy waste from on/off cycling or hot gas bypass. Combined with the air-cooled design requiring zero water for heat rejection, this solution offers one of the lowest environmental footprints in its capacity class across energy, water, and refrigerant metrics.

Key Features Deep Dive
IEER 4.7-4.8 – Best-in-Class Part-Load Efficiency

Since commercial chillers operate at peak load for only 1-5% of annual hours, part-load efficiency determines annual energy consumption. The IDV system achieves IEER values of 4.7-4.8 – among the highest for scroll chillers in this range – translating to up to 40% energy savings versus conventional fixed-capacity models and directly reducing Scope 2 carbon emissions.

  • IEER 4.7-4.8 – Industry-leading integrated efficiency
  • 12.5%-100% stepless modulation – No cycling waste at any load point
  • Up to 40% energy savings – Versus fixed-capacity conventional chillers
  • Lower Scope 2 emissions – Reduced electricity consumption means less carbon
  • Favorable energy benchmarking – Outperforms most competing products
  • ROI from energy savings – Premium typically recovered in 2-4 years
Zero Water Consumption – Critical in Water-Stressed Regions

Air-cooled chillers require zero water for heat rejection. By comparison, equivalent water-cooled chillers consume approximately 2-4 liters per second of makeup water through evaporative cooling tower losses – representing 36,000-72,000 cubic meters per 5,000-hour cooling season. This elimination is crucial in drought-prone or water-stressed regions.

  • Zero cooling tower water consumption – Eliminates 36,000-72,000 m³ per season
  • No water treatment chemicals – Eliminates biocide and inhibitor environmental impact
  • No Legionella risk – Removes testing, treatment, and liability costs
  • No blowdown discharge – Eliminates contaminated water disposal
  • Water stress resilience – Operations unaffected by water restrictions
  • ESG water disclosure advantage – Dramatically lower water footprint
Dual Circuit Redundancy Without Energy Penalty

The RHAE/RCAE series features two independent refrigerant circuits. During normal part-load operation, only one circuit runs at high efficiency, with the second activating only when load exceeds single-circuit capacity. This provides essential uptime redundancy without energy penalty during typical operation.

  • Single-circuit efficiency at part load – One circuit runs at optimum point
  • No redundancy energy penalty – Backup capacity available without waste
  • Shared load at moderate demand – Both circuits in efficient range
  • Graduated capacity response – Smooth ramp-up matches actual demand
  • Maintenance without energy loss – One circuit serviced while other runs at full capacity
  • Consistent efficiency data – Predictable energy consumption across operating scenarios
Compact, Lightweight, No Water Infrastructure

The scroll chiller's compact design eliminates not only the cooling tower but all associated water infrastructure: pumps, pipes, treatment systems, blowdown drains, and makeup water connections. This reduces both embodied carbon from manufacturing and operational environmental impacts.

  • No cooling tower embodied carbon – Eliminates tower manufacturing emissions
  • No water pump energy – Additional electrical savings
  • No water treatment chemical supply chain – Reduced Scope 3 emissions
  • Simpler environmental management system – Fewer processes to monitor and report
  • Reduced maintenance waste – No tower fill replacement, no chemical containers
  • Faster environmental certification – Fewer systems to document and verify
Energy Monitoring and Audit-Ready Data

Standard Modbus and BACnet connectivity enables direct integration with building energy management systems. The controller outputs real-time energy consumption, operating capacity, and efficiency metrics for energy audits, carbon reporting, and sustainability disclosures.

  • Real-time energy data – Consumption, capacity, and efficiency metrics
  • ISO 50001 audit-ready – Verified energy consumption records
  • GHG Protocol Scope 2 compliant – Electricity data for carbon calculations
  • Portfolio benchmarking – Compare performance across properties
  • Performance gap detection – Identify anomalies before they become waste
  • Automated reporting – Data feeds directly into ESG and sustainability platforms
Long Service Life with Consistent Efficiency

Scroll compressor technology maintains consistent efficiency over decades of operation. Unlike systems with progressive efficiency degradation from oil fouling or component wear, the scroll chiller's sealed system maintains near-nameplate efficiency throughout its 20+ year design life.

  • 20+ year consistent efficiency – No progressive degradation
  • Sealed system design – No oil fouling of heat exchangers
  • Accurate long-term energy projections – No annual degradation factor needed
  • Predictable lifecycle emissions – Carbon models remain valid
  • Lower lifecycle carbon intensity – Efficient operation compounds over decades
  • Simplified replacement planning – Known performance at end of life
Technical Specifications
Parameter RHAE/RCAE Series RHAG/RCAG Series
Cooling Capacity 319.9-860 kW 340-920 kW
Refrigerant R410A (GWP 2,088) R410A (GWP 2,088)
IDV Variable Capacity Standard Standard
IEER 4.7 4.8
Water Consumption Zero Zero
Climate Class T3 – Full capacity at 55°C T3 – Full capacity at 55°C
Voltage 380-415V/50Hz 380-415V/50Hz
Certifications CE, Eurovent, AHRI 550/590 CE, AHRI 550/590
BMS Protocols Modbus RTU, Modbus TCP/IP, BACnet IP Modbus RTU, Modbus TCP/IP, BACnet IP
Installation Rooftop/ground outdoor Rooftop/ground outdoor
Warranty 5 years 5 years
Ideal Applications
Water-stressed regions – Zero water consumption critical in drought areas
Green building certification – High IEER supports LEED, BREEAM energy credits
Carbon-neutral targets – Maximum electrical efficiency minimizes Scope 2
Portfolio sustainability reporting – Consistent data across properties
Hospitals and schools – No water treatment chemicals, no Legionella risk
Data centers – High efficiency, zero water, reliable redundancy
Retail and hospitality – Compact, quiet, minimal environmental footprint
Government buildings – Energy audit compliant, certifiable performance
Mixed-use developments – Efficient, no water infrastructure needed
ESG-focused investments – Quantifiable energy and water metrics
Certifications & Standards
CE Certification – European Economic Area compliance
Eurovent Certification – Verified performance for European specifications
AHRI 550/590 – Verified performance for North American standards
ISO 9001/14001/45001 – Quality, environmental, and occupational health management systems
Product Gallery
Products
PRODUCTS DETAILS
Air Cooled Scroll Chiller 320-920 kW IDV Variable Capacity Zero Water Consumption R410A IEER 4.7 4.8
Detail Information
Place of Origin
China
Brand Name
OEM;MIDEA
Certification
CB,ISO
Product Name:
Air Cooled Scroll Chiller
Cooling Capacity:
319.9-860 KW 340-920 KW
IDV Variable Capacity:
Standard
IEER:
4.7 4.8
Voltage:
380-415V/50Hz 380-415V/50Hz
Refrigerant:
R410A (GWP 2,088)
Climate Class:
T3 — Full Capacity At 55°C
Certifications:
CE, Eurovent, AHRI 550/590
Highlight

Air Cooled Scroll Chiller R410A refrigerant

,

Variable Capacity Industrial Water Chiller

,

Zero Water Consumption Scroll Chiller

Product Description
Air Cooled Scroll Chiller 320-920 kW IDV Variable Capacity Zero Water Consumption R410A IEER 4.7 4.8
Zero Water, Maximum Efficiency – The Complete Environmental Equation

For energy managers evaluating total environmental impact, this air-cooled scroll chiller with IDV technology delivers class-leading electrical efficiency (IEER 4.7-4.8, up to 40% energy savings) combined with zero water consumption. In regions facing water stress – increasingly correlated with cooling demand – eliminating cooling tower water consumption provides strategic sustainability advantages beyond operational convenience.

The IDV (Independent Double Variable) system enables continuous stepless modulation from 12.5% to 100%, eliminating energy waste from on/off cycling or hot gas bypass. Combined with the air-cooled design requiring zero water for heat rejection, this solution offers one of the lowest environmental footprints in its capacity class across energy, water, and refrigerant metrics.

Key Features Deep Dive
IEER 4.7-4.8 – Best-in-Class Part-Load Efficiency

Since commercial chillers operate at peak load for only 1-5% of annual hours, part-load efficiency determines annual energy consumption. The IDV system achieves IEER values of 4.7-4.8 – among the highest for scroll chillers in this range – translating to up to 40% energy savings versus conventional fixed-capacity models and directly reducing Scope 2 carbon emissions.

  • IEER 4.7-4.8 – Industry-leading integrated efficiency
  • 12.5%-100% stepless modulation – No cycling waste at any load point
  • Up to 40% energy savings – Versus fixed-capacity conventional chillers
  • Lower Scope 2 emissions – Reduced electricity consumption means less carbon
  • Favorable energy benchmarking – Outperforms most competing products
  • ROI from energy savings – Premium typically recovered in 2-4 years
Zero Water Consumption – Critical in Water-Stressed Regions

Air-cooled chillers require zero water for heat rejection. By comparison, equivalent water-cooled chillers consume approximately 2-4 liters per second of makeup water through evaporative cooling tower losses – representing 36,000-72,000 cubic meters per 5,000-hour cooling season. This elimination is crucial in drought-prone or water-stressed regions.

  • Zero cooling tower water consumption – Eliminates 36,000-72,000 m³ per season
  • No water treatment chemicals – Eliminates biocide and inhibitor environmental impact
  • No Legionella risk – Removes testing, treatment, and liability costs
  • No blowdown discharge – Eliminates contaminated water disposal
  • Water stress resilience – Operations unaffected by water restrictions
  • ESG water disclosure advantage – Dramatically lower water footprint
Dual Circuit Redundancy Without Energy Penalty

The RHAE/RCAE series features two independent refrigerant circuits. During normal part-load operation, only one circuit runs at high efficiency, with the second activating only when load exceeds single-circuit capacity. This provides essential uptime redundancy without energy penalty during typical operation.

  • Single-circuit efficiency at part load – One circuit runs at optimum point
  • No redundancy energy penalty – Backup capacity available without waste
  • Shared load at moderate demand – Both circuits in efficient range
  • Graduated capacity response – Smooth ramp-up matches actual demand
  • Maintenance without energy loss – One circuit serviced while other runs at full capacity
  • Consistent efficiency data – Predictable energy consumption across operating scenarios
Compact, Lightweight, No Water Infrastructure

The scroll chiller's compact design eliminates not only the cooling tower but all associated water infrastructure: pumps, pipes, treatment systems, blowdown drains, and makeup water connections. This reduces both embodied carbon from manufacturing and operational environmental impacts.

  • No cooling tower embodied carbon – Eliminates tower manufacturing emissions
  • No water pump energy – Additional electrical savings
  • No water treatment chemical supply chain – Reduced Scope 3 emissions
  • Simpler environmental management system – Fewer processes to monitor and report
  • Reduced maintenance waste – No tower fill replacement, no chemical containers
  • Faster environmental certification – Fewer systems to document and verify
Energy Monitoring and Audit-Ready Data

Standard Modbus and BACnet connectivity enables direct integration with building energy management systems. The controller outputs real-time energy consumption, operating capacity, and efficiency metrics for energy audits, carbon reporting, and sustainability disclosures.

  • Real-time energy data – Consumption, capacity, and efficiency metrics
  • ISO 50001 audit-ready – Verified energy consumption records
  • GHG Protocol Scope 2 compliant – Electricity data for carbon calculations
  • Portfolio benchmarking – Compare performance across properties
  • Performance gap detection – Identify anomalies before they become waste
  • Automated reporting – Data feeds directly into ESG and sustainability platforms
Long Service Life with Consistent Efficiency

Scroll compressor technology maintains consistent efficiency over decades of operation. Unlike systems with progressive efficiency degradation from oil fouling or component wear, the scroll chiller's sealed system maintains near-nameplate efficiency throughout its 20+ year design life.

  • 20+ year consistent efficiency – No progressive degradation
  • Sealed system design – No oil fouling of heat exchangers
  • Accurate long-term energy projections – No annual degradation factor needed
  • Predictable lifecycle emissions – Carbon models remain valid
  • Lower lifecycle carbon intensity – Efficient operation compounds over decades
  • Simplified replacement planning – Known performance at end of life
Technical Specifications
Parameter RHAE/RCAE Series RHAG/RCAG Series
Cooling Capacity 319.9-860 kW 340-920 kW
Refrigerant R410A (GWP 2,088) R410A (GWP 2,088)
IDV Variable Capacity Standard Standard
IEER 4.7 4.8
Water Consumption Zero Zero
Climate Class T3 – Full capacity at 55°C T3 – Full capacity at 55°C
Voltage 380-415V/50Hz 380-415V/50Hz
Certifications CE, Eurovent, AHRI 550/590 CE, AHRI 550/590
BMS Protocols Modbus RTU, Modbus TCP/IP, BACnet IP Modbus RTU, Modbus TCP/IP, BACnet IP
Installation Rooftop/ground outdoor Rooftop/ground outdoor
Warranty 5 years 5 years
Ideal Applications
Water-stressed regions – Zero water consumption critical in drought areas
Green building certification – High IEER supports LEED, BREEAM energy credits
Carbon-neutral targets – Maximum electrical efficiency minimizes Scope 2
Portfolio sustainability reporting – Consistent data across properties
Hospitals and schools – No water treatment chemicals, no Legionella risk
Data centers – High efficiency, zero water, reliable redundancy
Retail and hospitality – Compact, quiet, minimal environmental footprint
Government buildings – Energy audit compliant, certifiable performance
Mixed-use developments – Efficient, no water infrastructure needed
ESG-focused investments – Quantifiable energy and water metrics
Certifications & Standards
CE Certification – European Economic Area compliance
Eurovent Certification – Verified performance for European specifications
AHRI 550/590 – Verified performance for North American standards
ISO 9001/14001/45001 – Quality, environmental, and occupational health management systems
Product Gallery
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