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All-in-One Water / Ground Source Heat Pump

One hydronic platform for space heating, cooling and domestic hot water. Connect the unit to a stable water source or ground loop and configure the distribution system for villas, apartments and light commercial buildings.

3 Functions Heating · Cooling · DHW
2 Heat Sources Water loop or ground loop
Up to 60°C* Heating outlet water
6–30 kW* Preliminary series range
All-in-one water and ground source heat pump unit
All-in-one ground source heat pump installed in a mechanical room
25–50%

Lower Electricity Use — Industry Reference

U.S. Department of Energy guidance states that geothermal systems can reduce electricity consumption by approximately 25%–50% compared with traditional heating and cooling systems.

Use a More Stable Source for Heating & Cooling

Outdoor air changes sharply across seasons. Ground and suitable water sources are generally more stable, reducing the temperature lift the refrigeration cycle must overcome and supporting efficient operation across the year.

Traditional heating & cooling reference100%
Geothermal system reference range50–75%

Illustrative comparison, not a guaranteed project saving. Actual consumption depends on building load, source temperature, loop and terminal design, controls, operating hours and local climate. Source: U.S. Department of Energy.

See the System Inside & Out

Evaluate more than the cabinet. The product structure, internal hydraulic and refrigeration components, and connected control interface all affect installation, commissioning and long-term service.

For technical evaluation: request the component list, hydraulic diagram, controller manual and remote-connectivity scope for the target model.

Choose the Source Around Site Conditions

The unit does not create a viable source loop by itself. Water quality, available flow, borehole or collector design, pumping energy and local permissions must be evaluated before equipment selection.

Water-source heat pump system configuration
WATER LOOP

Use a Qualified Water Source

Suitable where the project can provide stable entering-water temperature and flow. Confirm water analysis, filtration, heat exchanger protection and discharge or reinjection requirements.

Flow Rate Water Quality Source Temperature
Ground-source heat pump system configuration
GROUND LOOP

Exchange Heat with the Ground

Connect to a vertical borehole or horizontal collector designed from ground conductivity, annual load balance, available land, drilling conditions and fluid pressure loss.

Ground Survey Loop Length Pump Head

Preliminary Series Data

Use these values for early comparison. Request the model table before calculating loop flow, pump head, terminal capacity or electrical demand.

Request Model Datasheet  →
Product Type
Reversible water-to-water heat pump
Heating Capacity
6–30 kW*
Cooling Capacity
5–26 kW*
Heating Outlet Water
Up to 60°C*
Cooling Outlet Water
Down to 7°C*
Source Side
Ground loop or qualified water loop
Reference Heating COP
Up to 4.8 at B0/W35*
Reference Cooling EER
Up to 5.2 at W30/W7*
Power Supply
220–240 V / 1 Ph / 50 Hz · 380–415 V / 3 Ph / 50 Hz*
Inverter Technology
Full DC Inverter
Control Communication
RS485 / Modbus RTU*

*Editable pre-publication reference values. Capacity, COP/EER, water limits and electrical options vary by model and rating condition.

Where Stable-Source HVAC Makes Sense

Prioritize projects with suitable drilling or water-source conditions, year-round heating and cooling demand, limited outdoor-unit space or a long-term energy strategy.

Hotels and Resorts
Hospitality

Hotels and Resorts

Protect guest comfort without letting pool operation dominate your energy budget. A pool heat pump maintains inviting water temperatures, while a dehumidification model controls condensation and stuffiness around indoor leisure pools.

Aquatic and Fitness Centers
Commercial Facilities

Aquatic and Fitness Centers

Keep training lessons and public sessions running under stable conditions. Commercial pool heat pump capacity supports larger water volumes and extended operating hours, while integrated dehumidification protects the pool hall from persistent moisture.

Spas and Wellness Facilities
Wellness

Spas and Wellness Facilities

Give every guest the high-temperature water and calm atmosphere expected from a premium spa. A full DC inverter spa heat pump responds to changing demand without disruptive on/off cycling.

Schools and Community Pools
Public & Education

Schools and Community Pools

Support scheduled classes, competitions and community use with dependable water and air conditions. A correctly sized pool heat pump handles recurring heating demand, while system design addresses indoor moisture load.

Turn Site Data into a Selectable System

Water and ground source projects are won or lost at the system boundary. Send the source, building and terminal data before choosing a model.

01

Define Building Loads

Heating, cooling and DHW demand at the project design conditions.

02

Verify the Source

Water temperature, flow and quality, or ground-loop survey and design.

03

Match Hydronics

Terminal temperatures, tank, pumps, pressure loss and mode priority.

04

Confirm Supply Scope

Model, quantity, controls, OEM details, documentation and test criteria.

Send for preliminary selection: location, building load, source type and temperature, available flow, heating/cooling water temperatures, DHW demand, power supply and estimated quantity.

Submit Project Requirements  →

Water / Ground Source Heat Pump FAQ

Answers focused on source qualification, system design and purchasing.

What is the difference between water-source and ground-source operation?

The refrigeration unit uses a water circuit on the source side in both cases. A water-source project exchanges heat with qualified groundwater or another engineered water loop; a ground-source project connects to buried vertical or horizontal collectors. The unit selection must match the actual entering-water range and flow.

Can one unit provide heating, cooling and domestic hot water?

Yes, when the selected model and hydraulic design support the three modes. Define terminal water temperatures, DHW tank, operating priority and backup strategy; do not assume all three loads receive full capacity simultaneously.

Is the 25%–50% electricity reduction guaranteed?

No. It is an industry reference from U.S. Department of Energy guidance for geothermal systems compared with traditional heating and cooling systems. Project results depend on source temperature, building load, loop design, pumps, controls, operating hours and the comparison baseline.

What information is required before model selection?

Provide heating and cooling loads, DHW demand, source type, entering-water temperature range, available flow, water analysis where applicable, terminal temperatures, pressure-loss data, power supply and project location.

What OEM options can be discussed?

Depending on model and quantity, the scope may include logo and nameplate, exterior branding, controller configuration, packaging and manual languages. Send the target market, required certification, annual estimate and branding files for confirmation.

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