Applications

Matching cooling demand

with available heat.

Each heatChiller is designed around its actual application.

The key factors are the required cooling capacity, the desired chilled water temperature, the available heat source and the heat rejection conditions.

 AI enhanced

from 50 ºC

Usable heat

down to 6 ºC

Chilled water

10 kW - 3 MW

Cooling capacity

Building Cooling

 AI enhanced

Efficient cooling for
buildings and districts.

The heatChiller supplies chilled water for commercial properties, public buildings and urban districts. It can be driven by waste heat, district heating, solar thermal energy or CHP units, for example.

It is particularly well suited to surface cooling systems. With the right system design, the heatChiller can also cover the entire cooling supply.

Storage, night-time operation, the thermal inertia of the building, acceptable temporary capacity shortfalls and adiabatic heat rejection open up further options for optimised full supply.

Data Centres

Cooling for continuous
data centre loads.

The heatChiller can efficiently cover continuous cooling loads as base load and reduce the electrical peak load of the cooling system. It can be integrated into existing chilled water systems and redundancy concepts.

In liquid-cooled high-performance and AI data centres, available waste heat from 50 °C can be used directly to generate cooling.

 AI enhanced

Process and Machine Cooling

Turning process heat into process cooling.

The heatChiller supplies chilled water for production processes, machinery and technical equipment.
At the same time, existing waste heat from 50 °C can be used directly as driving energy

Depending on the process, the heatChiller is designed as a base-load unit or as a complete cooling supply. It can also be integrated into suitable chilled water ring mains.

 AI enhanced

Heat Sources

Which heat can the heatChiller use?

Suitable sources are continuously or regularly available heat sources with water temperatures from 50 °C.

Besides temperature, heat output, flow rate and availability over time are also decisive.

An initial feasibility check shows how much cooling capacity can be generated from your existing heat source.

Liquid-cooled data centres

Air compressors

Furnaces, drying processes and hot exhaust streams

Process baths

Production machinery

CHP units

District heating networks

Solar thermal

Warm cooling water circuits

Steam and condensate

Project inquiry

Is the heatChiller right for your project?

Briefly describe your cooling requirements or available heat source.

We will get in touch personally to evaluate together which heatChiller configuration is suitable for your project.

 

1. Describe your project

Provide us with your contact details and a brief description of the application.

2. Check feasibility

Together, we will clarify the cooling demand, heat source, temperatures, and key project parameters.

3. Receive a proposal

You will receive an initial system recommendation, the next project steps, and an estimated delivery window.