Renewable energy set, consumer unit, multimeters, 1 propeller

Cidepe STHEAM
Learn more about STHEAM education applied to this product by accessing the training path below:
2.6 Wind energy: wind for a new world. "Wind energy transforms the force of the winds into an inexhaustible source of clean electricity, driving the sustainable future of the planet."2.7 Electric energy from water? "Studying hydroelectricity is discovering the transformative power of water, where nature and engineering come together to generate renewable energy and build a more sustainable future."
Function
Intended for experimental study, renewable energy laboratory and carrying out renewable energy experiments on: Renewable energy. Wind energy. Generation of electrical energy through a wind turbine and the importance of the blade angle. Wind energy. Wind farm. The influence of the blade angle on wind energy generation. The consumption unit. The multiplier box of a wind turbine. Gear coupling. The frequencies and angular velocities in the gears of an amplifier. The transmission ratio between gears. The power, electrical frequency and rotation speed of the wind turbine. The influence of the blade angle on wind energy generation. The pitch angle of the blades. Varying the pitch angle, measuring and tabulating values. Determining the electrical power of the wind turbine. Determining the electrical frequency and rotation speed of the wind turbine shaft. Photovoltaic energy. Using solar energy and an electrical energy accumulator to light a lamp. Connecting the electrical energy accumulator and base with terminals and lamp to the solar panel. Converting light energy into electrical energy. The conversion of electrical energy into light energy. The generation of electrical energy through a solar panel and the blackout, the blackout. What is understood by renewable energy. Photovoltaic solar energy, a type of renewable energy. Remembering Alexandre-Edmond Becquerel and the photovoltaic effect. The consumption of electrical energy and the generating capacity. Some factors that influence the performance of the photovoltaic panel. The photovoltaic cell. The conversion of light energy into electrical energy. The conversion of electrical energy into mechanical energy. Maintaining the distance between the illuminator and the panel, without an intermediate filter. The illuminance or illumination of the luminous flux. Maintaining the distance between the illuminator and the panel, using an intermediate filter. The absorbance of light energy. The transmittance of light energy. Varying the angle of incidence, without an intermediate filter. Checking the conditions for maximum performance of a photovoltaic solar panel. The resistance and electrical power of the panel, with perpendicular incidence. The resistance and electrical power of the panel, with perpendicular incidence, increasing the distance. The resistance and electrical power of the panel, with perpendicular incidence, varying the angle. Remembering the illuminance or illumination of the luminous flux. The advantages of using the energy accumulator in a solar panel circuit with load. Not using the electric energy accumulator. Using the electric energy accumulator. The characteristic curve of the photovoltaic solar panel and its efficiency. Assembling the electric circuit with solar panel, load and meters. Measuring electric voltages and currents. Determining the resistance and electric power of the panel, with perpendicular incidence. Determining the area of incidence of the panel. Learn more about solar radiation. The efficiency of the photovoltaic panel. Hydraulic energy. Generation of electric power through a hydrogenerator. Hydroelectric energy, a type of renewable energy. Some of the basic components of a hydroelectric plant. The operation of a hydroelectric plant. The power consumed, the electric frequency and the rotation speed of the hydrogenerator. The electric frequency and rotation speed of the hydrogenerator shaft. The electric power consumed by the hydrogenerator. Hybrid systems. Renewable hybrid system of electric power generation. The hybrid solar, wind and hydroelectric system, or hydro, etc.
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Key Experiments
- » The generation of electrical energy by means of a wind turbine and the importance of the angle of the blades. - 1082.300
- » The gear box of a wind turbine. - 1082.305
- » The power, electrical frequency and rotation speed of the wind turbine. - 1082.300A
- » The generation of electrical energy through a solar panel and the blackout, the blackout. - 1082.200
- » Some factors that influence the performance of photovoltaic panels. - 1062.006A_3
- » Checking the maximum yield conditions of a photovoltaic solar panel. - 1062.007A
- » The advantages of using an energy storage device in a solar panel circuit with a load. - 1082.077B
- » Measuring the variation of the ddp on the electrical energy accumulator associated with the solar panel. - 1082.078B
- » The characteristic curve of the photovoltaic solar panel and its efficiency. - 1082.078C
- » Generation of electrical energy by means of a hydrogenerator - 1082,400
- » The power consumed, the electrical frequency and the rotation speed of the hydrogenerator. - 1082.400A
- » Hybrid renewable energy system, electricity generation. - 1082,500