Low-energy house & Solar air heat - Unionpedia, the concept map
Shortcuts: Differences, Similarities, Jaccard Similarity Coefficient, References.
Difference between Low-energy house and Solar air heat
Low-energy house vs. Solar air heat
A low-energy house is characterized by an energy-efficient design and technical features which enable it to provide high living standards and comfort with low energy consumption and carbon emissions. Solar air heating is a solar thermal technology in which the energy from the sun, insolation, is captured by an absorbing medium and used to heat air.
Similarities between Low-energy house and Solar air heat
Low-energy house and Solar air heat have 12 things in common (in Unionpedia): Fossil fuel, List of low-energy building techniques, National Renewable Energy Laboratory, Natural Resources Canada, Passive house, Passive solar building design, Photovoltaics, Renewable energy, Solar thermal collector, Solar water heating, Sustainable architecture, Zero-energy building.
Fossil fuel
A fossil fuel is a carbon compound- or hydrocarbon-containing material such as coal, oil, and natural gas, formed naturally in the Earth's crust from the remains of prehistoric organisms (animals, plants and planktons), a process that occurs within geological formations.
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List of low-energy building techniques
Low-energy buildings, which include zero-energy buildings, passive houses and green buildings, may use any of a large number of techniques to lower energy use.
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National Renewable Energy Laboratory
The National Renewable Energy Laboratory (NREL) in the US specializes in the research and development of renewable energy, energy efficiency, energy systems integration, and sustainable transportation.
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Natural Resources Canada
Natural Resources Canada (NRCan; Ressources naturelles Canada; label)Natural Resources Canada is the applied title under the Federal Identity Program; the legal title is Department of Natural Resources.
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Passive house
Passive house (Passivhaus) is a voluntary standard for energy efficiency in a building, which reduces the building's carbon footprint.
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Passive solar building design
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.
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Photovoltaics
Photovoltaics (PV) is the conversion of light into electricity using semiconducting materials that exhibit the photovoltaic effect, a phenomenon studied in physics, photochemistry, and electrochemistry.
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Renewable energy
Renewable energy (or green energy) is energy from renewable natural resources that are replenished on a human timescale.
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Solar thermal collector
A solar thermal collector collects heat by absorbing sunlight.
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Solar water heating
Solar water heating (SWH) is heating water by sunlight, using a solar thermal collector.
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Sustainable architecture
Sustainable architecture is architecture that seeks to minimize the negative environmental impact of buildings through improved efficiency and moderation in the use of materials, energy, development space and the ecosystem at large.
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Zero-energy building
A Zero-Energy Building (ZEB), also known as a Net Zero-Energy (NZE) building, is a building with net zero energy consumption, meaning the total amount of energy used by the building on an annual basis is equal to the amount of renewable energy created on the site or in other definitions by renewable energy sources offsite, using technology such as heat pumps, high efficiency windows and insulation, and solar panels.
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The list above answers the following questions
- What Low-energy house and Solar air heat have in common
- What are the similarities between Low-energy house and Solar air heat
Low-energy house and Solar air heat Comparison
Low-energy house has 123 relations, while Solar air heat has 28. As they have in common 12, the Jaccard index is 7.95% = 12 / (123 + 28).
References
This article shows the relationship between Low-energy house and Solar air heat. To access each article from which the information was extracted, please visit: