When designing each and all energy systems, ENERGIA NETA places the following objectives on the list of priorities:

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When designing each and all energy systems, ENERGIA NETA places the following objectives on the list of priorities:

The minimum cost of 1 kW of heat and cold
A balance between generated, recuperated and consumed heat and cold
The maximally possible energy independence of facilities
The minimum pay-off periods of the systems (ROI)
Heat exchangers

Heat exchangers

In its processes, ENERGIA NETA makes use of the most effective heat exchange equipment capable of operating at high temperatures and in aggressive media. This allows for getting the best results in terms of thermal energy cost and productivity of heat exchange processes.

There are several types of heat exchange whose combinations are successful used by ENERGIA NETA in its solutions.

Emission
Thermal conductivity
Convection
Рекуперация

Recuperation

The ENERGIA NETA’s resource recovery plants are the world’s most effective equipment of this sort. In the vast numbers of projects, there has been implemented a technology for reusing unclaimed thermal energy on the way from a heat potential source to the customer with its subsequent utilization for technological or social purposes, with this technology continues developing in new industrial areas.

There are a lot of sources of lost thermal energy to be possibly transformed into sources of new thermal energy. Sources:

Сгорание различных видов топлива
burning of different fuels
Вентиляционный воздух
ventilating air
Сточные воды
waste water
Тепло от технологических процессов
heat generated by technical processes

Apart from effective utilization of throw-away energy, our technologies provide for heat recovery from renewable sources of energy that essentially are inexhaustible.

This technology is based on drawing energy from natural processes which ceaselessly arise in the surrounding world.

Солнце
The sun
Воздух
Air
Водоемы
Water bodies
Грунт
Soil
>Accumulation

Accumulation

The conservation of energy is the important aspect. To get the most out of the system implementation, there must be used cost-efficient accumulators of thermal and electrical energy. They amount to 90% of total required kW*hours in terms of expenditures on heat- and cold-supply y in reference to other energy costs.

Energy consumption in different climatic zones
Consumers of energy
77%
Heating
12.5%
Hot water
Cooking
Electrical appliances
Lighting
10.5%
39%
Heating
37%
Cooling
12.5%
Hot water
Cooking
Electrical appliances
Lighting
10.5%
Finland
Finland
Summer.........+15…+20 °C
Winter.........-30…-10 °C
Morocco
Morocco
Summer.........+20…40 °C
Winter.........+8…+18 °C
Thus, it is clearly seen that the difference between cold and warm climates requires diversification in energy conservation. Our systems allow you to choose the optimal configuration taking into account the territorial and climatic features.
Heat and cold selection

Heat and cold selection

For the forced heat or cold extraction, use is made of several technical solutions that have been implemented on the basis of novel equipment which is used by us to complete tasks at hand:

Atmospheric<br>air
Atmospheric
air
Solar<br>radiation
Solar
radiation
Waste<br>waters
Waste
waters
Ground<br>soil
Ground
soil
Atmospheric<br>air
Atmospheric
air
Solar<br>radiation
Solar
radiation
Ventilation<br>air
Ventilation
air
Waste<br>waters
Waste
waters
Ground<br>soil
Ground
soil
Smoke<br>gases
Smoke
gases
Absorption machines