Zineric Wind Turbine Model Wind T-1 350V 2000W

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Zineric Wind Turbine Model Wind T-1 350V 2000W is available to buy in increments of 1

Zineric Wind Turbine Wind T-1 350V 2000W (high-voltage)

Only for DEYE HYBRID LV inverter


Micro wind power plant. Recommended for stationary installations mounted on building roofs or masts.
This is a 3-phase turbine with high efficiency for its weight and size.

NOTE: a Polish-made Elnix on-grid wind inverter must be purchased separately for this turbine.

Like any wind turbine, it should be installed as high as possible, away from terrain obstacles.
Without notification and without a permit, it can be mounted on an existing building on a mast up to 3 metres above the highest part of the roof.
The installation must be solid. Factory masts are also available in our offer.

Real energy yield is achieved from wind speeds of 8 m/s (around 30 km/h). It must be a stable, non-turbulent wind. Any obstacles such as buildings or trees within 50 m cause turbulence that significantly reduces wind energy. The best location is an open field on a small hill. Finding suitable conditions for a turbine may not be easy. Of course, the higher the mast, the stronger the wind.

GENERATOR
MATERIAL ALUMINIUM
NOISE 40 dB
SIZE 21 × 61 × 41 cm
WEIGHT 24 kg
COLOUR white
MAST WITHOUT MAST
SPEED
START-UP WIND SPEED 2 m/s
RATED WIND SPEED 12.5 m/s
MAXIMUM WIND SPEED 60 m/s
BLADES
MATERIAL composite
LENGTH 107 cm
WEIGHT 650 g (per blade)
ROTOR DIAMETER 225 cm
POWER
VOLTAGE 350 V (AC)
CURRENT 6 A
RATED POWER 2000 W
MAXIMUM OUTPUT 2200 W
INCLUDED
BODY 1 piece
NOSE CONE 1 piece
HUB 1 piece
BLADES 3 pieces
USER MANUAL 1 piece
MOUNTING SCREWS 1 set
REQUIRED
CHARGE CONTROLLER OR INVERTER
MAST
EXTENSION CABLE
BATTERY minimum 400 A


A wind turbine needs strong wind to generate a noticeable amount of energy. The turbine’s power depends on the cube of wind speed.
Since there have been many misunderstandings about such turbines, here we show how power depends on wind speed and rotor diameter.

The theoretical power in a stream of flowing air/fluid is:

P = 0.5 × ρ × V³ × S
Where: P – power, ρ – fluid density (air at 20 °C is 1.2 kg/m³), V – wind speed in m/s, S – flow area in m².
The maximum efficiency of horizontal-axis turbines is η = 0.4, the real efficiency is η = 0.3 (i.e. about 30% of wind energy can be converted into electrical energy).
Therefore, the electric power of our turbine with a 2.2 m diameter and a wind speed of 36 km/h = 10 m/s:
Flow area = 3.14 × (2.2 / 2)² = 3.8 m²
P = 0.3 × 0.5 × 1.2 × 10³ × 3.8 = 684 W
For a wind speed of 15 m/s:
P = 0.3 × 0.5 × 1.2 × 15³ × 3.8 = 2308 W
For a wind speed of 5 m/s:
P = 0.3 × 0.5 × 1.2 × 5³ × 3.8 = 85.5 W

Assuming 24 hours of 5 m/s wind throughout 365 days gives energy output of 750 kWh.

More Information
ManufacturerZineric
Weight25.500000
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