Aerogeneradores de minieolica

Huesca Telecommunications

Huesca Telecommunications
Data sheet

Equipment used for this installation

  • Government of Huesca
  • Enair 70 to 48V
  • 34 Panels of 230W
  • Regulators Xantrex MPPT 60 Amp
  • Xantrex 6000W Inverter
  • OPZS batteries at 3000 Ah
  • 14m tower
  • Average wind speed 6.5 m / s
Wind power
Wind power

Wind data of daily, monthly and annual generation.

  • WIND SPEED SHAFE HEIGHT 0m/s
  • DENSITY FACTOR: 0%
  • AVERAGE OUTPUT POWER: 0W
  • ANNUAL ENERGY: 0kWh/año
  • MONTHLY ENERGY: 0kWh/mes
  • OPERATING TIME: 0%
  • MARGIN OF LOSSES: 0
  • DAILY ENERGY: 0kWh/día
  • (*Assuming correct wind speed)
Global results

Total and maximum generation.

  • GENERATION AVERAGES
  • Total wind 0kWh/día
  • Photovoltaic 0kWh/día
  • MAXIMUM ATTAINABLE:
  • Total wind 0kWh/día
  • Photovoltaic 0kWh/día
Tabla de frequencias (%)
Direction Frecuencia Velocidad
N
NNE
NE
ENE
E
ESE
SE
SSE
S
SSW
SW
WSW
W
WNW
NW
NNW

Frequencies Rose (%)

Speeds Rose (m/s)

Huesca Telecommunications

One phase installation 100% renewable, capable of offering more than 70 kWh / day, thanks to the contribution of wind energy provided by the Enair 70 wind turbines and its correct configuration combined with solar panels.

Enair technology, based on professional quality standards for high-performance installations, assures that these kinds of installations can be self-sufficient in terms of safety and risk-free, offering optimum performance in all circumstances.

This type of installation can also be installed in containers so that they can be pre-installed in other places and transported to their final destination, by simply placing the container in the right place and connecting it and adapting it wherever necessary.

The installations which combine solar energy and wind power, are very interesting for this type of facility that require an energy supply 24 hours a day, 365 days a year, as at night when there is no solar energy it is the wind which takes care of this function, constantly charging the batteries, which allows them to be less deeply discharged and extend their useful life cycles.

The advantages of such installations with mixed professional uses have been acknowledged by the renewable sector since long ago, but their use has been ceased due to the lack of technological development used in the past by small wind turbines, since they were weak, fragile, produced little energy and needed great maintenance, we are talking about low quality technologies developed a long ago.

It is thanks to the new technology from ENAIR, based on professional work standards, that this type of application has recuperated trust in a sector as professionalised as telecommunications.

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