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Aquapura Inverter

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Aerothermal heat pump, designed for air conditioning and water heating for residential use. Ideal for underfloor heating, air conditioning with fan coils and heating with radiators.

Temperature up to 60°C, with maximum efficiency.

The Aquapura Inverter Heat Pump is available in models from 4 to 20 kW.
The Aquapura Inverter has a DHW function, 100% hydraulic installation and is ultra compact.
It consists of an outdoor unit, for the heating and air conditioning versions, and an indoor unit, the water heater for the DHW version.

THE RANGE OF AEROTHERMAL HEAT PUMPS

MODELS FROM 4 TO 18 KW

KEY FEATURES

  • Heating and/or Cooling
  • Reduced maintenance and low operating noise
  • Operation at outdoor temperatures down to –25°C
  • Weather resistant anodized coating construction
  • Domestic Hot Water Function

HOT WATER

RADIANT FLOOR

CENTRAL HEATING

HIGH LEVELOF EFFICIENCY

DOMESTIC HOT WATER PRODUCTION

The heat from the environment is indirect solar energy, stored in water, air and soil. The heat pump will extract heat precisely from these heat sources for later use in your home’s climate. Air/Water heat pumps with high energy efficiency INVERTER technology are a modern, efficient and clean solution that guarantees the comfort of your home, always respecting the environment.

It’s a smart way to use nature’s resources to improve your quality of life. By adopting one of these solutions, you will be making a serious commitment to the issue of reducing harmful emissions to our atmosphere, thus contributing to the planet’s natural balance. The Air/Water heat pumps with INVERTER technology were developed to meet the needs of both domestic and industrial use, for climatization (heating and cooling) and Domestic Hot Water solutions (DHW).

FUNCTIONING PRINCIPLE

There is a refrigerant fluid that is pumped into an external heat exchanger (evaporator). Here the fluid absorbs energy from the environment due to the temperature differential achieved outside. During this process, the fluid changes state and becomes vapour. The gaseous fluid is aspirated by the mechanical part of the system, the compressor. Here it is compressed, the pressure rises and consequently the fluid temperature rises. The fluid then travels to a second internal heat exchanger (condenser) and transfers the heat it transports to the house’s heating system. The fluid goes back to the liquid state by cooling. The fluid pressure is reduced due to throttling that occurs in the expansion valve and the process starts over again.

THE HEAT PUMPS THAT GIVE MORE COMFORT AND ECONOMY TO YOUR HOME

Aquapura inverter

  • The ideal heat pump for radiant floor
  • Efficient and silent solution
  • Attractive and compact design
  • Heat pump prepared for DHW
  • Allows heating and cooling

FAN CONVECTORS

*AQUAPURA INVERTER 6, clima médio, Ar 7°C / Água 30°C

INVERTERHEAT PUMPS

STAND OUT FOR THEIRHIGH PERFORMANCE

Heat pumps are prepared for heating and cooling as well as domestic water heating. These solutions stand out for their high energy efficiency, which makes them capable of achieving an energy rating up to A+++ for heating. They also stand out for their ability to integrate with other heating systems and easy installation.

CHART OF ENERGY CONSUMPTION
INVERTER VS TRADITIONAL
OPERATION PERIOD

WELL-BEING

CLIMATE WITH INERTIA
CLIMATE WITH INERTIA + DHW
DOMESTIC HOT WATER
CLIMATE WITHOUT INERTIA + DHW
THE PRESENCE OF AN INERTIA TANK IN THE INSTALLATION GUARANTEES SEVERAL ADVANTAGES:
  • Supplement in energy savings
  • Increased thermal output available
  • Shorter operating periods
STORAGE WATER HEATER FOR PRODUCTION OF DOMESTIC HOT WATER (DHW-HP):
  • Capacities of 200, 300 and 500 litres
  • AISI 444 stainless steel tank
  • 5-year warranty
  • High-efficiency XL coil

Equipment: Aquapura 6 | Aquapura 12 | Aquapura 16

 

TECHNICAL DATAAQUAPURA 6
(INVERTER R 3-8)
AQUAPURA 12
(INVERTER R 8-12)
AQUAPURA 16
(INVERTER R 5-18)
AQUAPURA 16T
(INVERTER R 5-18)
Power Supply-1~/ 230V/ 50Hz1~/ 230V/ 50Hz1~/ 230V/ 50Hz3N~/ 400V/ 50Hz
Power suppliedHeating (Nom./Max)kW6,47 / 8,258,25 / 12,5215,36 / 18,51
Cooling (Nom./Max)kW5,12 / 6,107,01 / 11,3113,92 / 16,23
Power consumedHeating (Nominal)kW1,331,713,21
Cooling (Nominal)kW1,41,943,88
COP1Nominal-4,874,824,79
EER1Nominal-3,653,613,58
Energy efficiency class at 35°CHot climate-A+++A+++A+++
SCOP2 -Seasonal efficiency at 35°C-5,365,035,11
Energy efficiency class at 35°CMedium climate-A++A++A++
SCOP2 -Seasonal efficiency at 35°C-4,764,734,67
Energy efficiency class at 55°C-A++A++A++
SCOP2 -Seasonal efficiency at 55°C-3,913,863,72
Maximum consumption (Power/current)kW / A2,9 / 134,6 / 21,57,2 / 33,27,2 / 1,2
Water temperatureHeating°C606060
Cooling°C777
Outdoor operating temperaturesHeating°C-25 a 35-25 a 35-25 a 35
Cooling°C10 a 4310 a 4310 a 43
Refrigerant (R32) / CO2 Eq.Kg / Ton1,3 / 0,881,7 / 1,152,0 / 1,35
Compressor-DC InverterDC InverterDC Inverter
Number of fans / Typology- / -1 / DC1 / DC2 / DC
Sound power3dB(A)37~5442~5544~58
Hydraulic Connections DiameterInlet/Outletinches1”1”1” 1/4
Integrated recirculation pump-IntegratedIntegratedIntegrated
Water flow (min)m3/h11,72,9
Hydraulic circuit load losskPa283245
Dimensions(AxLxP)805 x 1002x 490915 x 953 x 4601315 x 997 x 437
WeightKg90108157
(1) COP and EER were calculated based on the EN14511-2 standard.
(2) SCOP was calculated according to the EN14825 standard.
(3) Sound power was calculated according to the 12102-1 standard.

catalogs


Installation manuals
ENERGIE EST, Lda.
enMANUAL-BC-INVERTER-EN-R4.pdf

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