Whatsapp

Renewable energy system, consumer unit and multimeters


Cidepe STHEAM

Learn more about STHEAM education applied to this product by accessing the training path below:

2.6 Energia eólica: vento para um novo mundo. "A energia eólica transforma a força dos ventos em uma fonte inesgotável de eletricidade limpa, impulsionando o futuro sustentável do planeta."
2.7 Energia elétrica a partir de água? "Estudar hidroeletricidade é descobrir o poder transformador da água, onde a natureza e a engenharia se unem para gerar energia renovável e construir um futuro mais sustentável."

Function

Intended for experimental study, renewable energy laboratory and conducting renewable energy experiments on: Renewable energies. Wind energy. Generation of electrical energy by means of a wind turbine and the importance of the blade angle. Wind energy. Wind farm. The influence of blade angle on wind energy generation. The consumption unit. The gearbox 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 rotational speed of the wind turbine. The influence of blade angle on wind energy generation. The pitch angle of the blades. Varying pitch angle, measuring and tabulating values. Determining the electrical power of the wind turbine. Determining the electrical frequency and rotational 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. The conversion of light energy into electrical energy. The conversion of electrical energy into light energy. The generation of electrical energy through a solar panel and blackouts. What is meant by renewable energy. Photovoltaic solar energy, a type of renewable energy. Remembering Alexandre-Edmond Becquerel and the photovoltaic effect. Electrical energy consumption and generating capacity. Some factors that influence the efficiency of a photovoltaic panel. The photovoltaic cell. The conversion of light energy into electrical energy. The conversion of electrical energy into mechanical energy. Maintaining the distance from the illuminator to the panel, without an intermediate filter. The illuminance or illumination of the luminous flux. Maintaining the distance from the illuminator to 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 efficiency 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 illuminance or illumination of luminous flux. The advantages of using an energy storage device in a solar panel circuit with a load. Not using an electrical energy storage device. Using an electrical energy storage device. The characteristic curve of the photovoltaic solar panel and its efficiency. Assembling the electrical circuit with solar panel, load, and meters. Measuring voltages and electrical currents. Determining the resistance and electrical 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. Hydrodynamics. Hydraulic energy. Generation of electrical energy through a hydro generator. Hydroelectric energy, a type of renewable energy. Some of the basic components of a hydroelectric power plant. The operation of a hydroelectric power plant. The power consumed, the electrical frequency, and the rotation speed of the hydro generator. The electrical frequency and rotation speed of the hydro generator shaft. The electrical power consumed by the hydro generator. Hybrid systems. Renewable hybrid system for generating electrical energy. The hybrid solar, wind, and hydroelectric system, or hydroelectric system, etc.

Cidepe - Industrial Center for Teaching and Research Equipment - is a company of reference in educational instruments in educational institutions in Brazil and abroad. With an experienced team of engineers, professors, researchers, consultants and other collaborators, Cidepe develops products with technology and human talent to improve the teaching dynamics.
The entire history of pioneering spirit and work focused on customer needs makes the Cidepe brand increasingly present in the lives of thousands of students, bringing greater participation and interest to the knowledge experience in the areas of Chemistry, Physics and Biology. Contact our sales team, we are available to assist your educational institution on this journey towards practical knowledge.

Receive news about us by email

By clicking in SEND, you agree to our Privacy Policy

Add to project