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Junior Solar Sprint was created in the 1980s by the National Renewable Energy Laboratory (NREL) to teach younger children about the importance and challenges of using renewable energy. [3] [4] The project also teaches students how the engineering process is applied, and how solar panels, transmission, and aerodynamics can be used in practice. [3]
Energy Efficiency: Geothermal wells for efficient heating and air-conditioning are used. Photovoltaic and solar cells have been installed on the building, and natural lighting is used very effectively along with day sensors that automatically dim lights when daylight is too strong.
Energy Conservation: Probably the most important part of building green is energy conservation. By implementing passive design , structural insulated panels (SIPs), efficient lighting, and renewable energy like solar energy and geothermal energy , a home can benefit from reduced energy consumption or qualify as a net zero energy home.
Solar energy is the radiant energy from the Sun's light and heat, which can be harnessed using a range of technologies such as solar electricity, solar thermal energy (including solar water heating) and solar architecture.
In passive solar building design, windows, walls, and floors are made to collect, store, reflect, and distribute solar energy, in the form of heat in the winter and reject solar heat in the summer. This is called passive solar design because, unlike active solar heating systems, it does not involve the use of mechanical and electrical devices.
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Solar energy is clean and renewable. Solar architecture is designing buildings to use the sun's heat and light to maximum advantage and minimum disadvantage, and especially refers to harnessing solar power. It is related to the fields of optics, thermics, electronics and materials science. Both active and passive strategies are involved.
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