Cost Effectiveness

We are looking for modern solutions that consume minimal energy

Our main goal is to implement air conditioning, heating and ventilation systems that consume as little energy as possible, and, if possible, systems that use recovery of unused or waste energy.

We also strive to use free cooling technology - that is, free energy from the air for cooling purposes - in various configurations.





 

We strive to create systems that cooperate as much as possible with photovoltaics in both heating and cooling modes. This is particularly applicable in hybrid systems where we can use PV cells throughout the year.

In addition, in hybrid systems we can change the priority due to the power source to gas or electricity depending on the price of the medium or due to obtaining maximum efficiency at a given time of load.

In addition, we implement modern autonomous automation systems such as motion and presence sensors analyzing the presence of people in the rooms and the amount of heat released by them and adjusting the operation of the system to the existing conditions in real time, and many other  options that allow you to save up to 50-60% of operating costs compared to systems without these solutions.

 

Among other things, we implement the following solutions in our projects:

 

  • Modern GHP systems

Gas Heat Pumps - using up to 90% less electricity compared to traditional electricity-powered systems. Operating costs can be up to 30-70% less depending on configuration

 

  • Latest VRF air conditioning systems

Electrically-powered air conditioning and heating systems with high energy efficiency coefficients and a range of technical solutions and heat recovery systems that enable continuous reduction of energy consumption. Operating costs are up to 70% less compared to existing installed systems.

 

  • Latest VRF-GHP hybrid systems

The use of gas-electric hybrid systems gives us unprecedented opportunities for diversification  of energy sources obtaining minimal operating costs and much greater energy security, which is now appreciated by a growing group of investors.

 

  • Micro-cogeneration, Trigeneration

Combined systems for simultaneous production of electricity heat and cooling. Operating costs are up to 50-90% less compared to standard systems depending on configuration, applicability and use of waste heat

 

  • Adsorption Systems

Systems for producing cooling from waste heat. Operating costs are up to 90% less depending on the source of waste heat to feed the adsorption systems

 

  • Latest Home Air-to-Water Heat Pump Systems

used for heating and hot water production in both new and existing installations. Operating costs are up to 50% less compared to traditional solutions.

 

  • RENEWAL Systems

Replacement of old VRF systems on R22 with new VRF air conditioning systems on R410A without replacing the existing refrigeration system. Operating costs according to the manufacturer are up to 40% less compared to existing installed systems. We were able to reduce operating costs up to 70% by additionally using automation with advanced energy saving features.

 

  • Automation systems with advanced energy saving features

Thanks to a number of advanced algorithms of energy-saving functions used in our systems, we can save an additional up to 60% of system operating costs.

 

  • Distributed ventilation systems with heat recovery exchangers with high efficiencies

They give a big effect especially when working with VRF, GHP and hybrid systems, as well as advanced automation and CO2 sensors. We supply air when the need arises, in the amount corresponding to the demand and at the place where it is just needed. Operating costs are up to 40-80% less compared to traditional ventilation systems.

 

  • Inverter air conditioners with high energy efficiency ratios.

Operating costs are up to 50% less compared to fixed capacity on-off air conditioners.

 


In addition, we improve existing design solutions or installations already made.



We do this in such a way as to radically reduce energy consumption while minimizing investment.

We can boast of realizations in which with a few changes from the design documentation, while not increasing investment costs, we have reduced energy consumption by as much as 4 times.