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  2. Passive solar building design - Wikipedia

    en.wikipedia.org/wiki/Passive_solar_building_design

    Many unscientific, intuition-based expensive construction experiments have attempted and failed to achieve zero energy – the total elimination of heating-and-cooling energy bills. Passive solar building construction may not be difficult or expensive (using off-the-shelf existing materials and technology), but the scientific passive solar ...

  3. Trombe wall - Wikipedia

    en.wikipedia.org/wiki/Trombe_wall

    While passive solar techniques can reduce annual heating demand up to 25%, [19] specifically using a Trombe wall in building can reduce a building's energy consumption up to 30% in addition to being environmentally friendly. [20] Similarly, the energy heating savings of 16.36% can be achieved if a Trombe wall was added to the building envelope ...

  4. Double envelope house - Wikipedia

    en.wikipedia.org/wiki/Double_envelope_house

    A double envelope house is a passive solar house design which collects solar energy in a solarium and passively allows the warm air to circulate around the house between two sets of walls, a double building envelope. This design is from 1975 by Lee Porter Butler in the United States.

  5. List of low-energy building techniques - Wikipedia

    en.wikipedia.org/wiki/List_of_low-energy...

    2 Improvements to heating, cooling, ventilation and water heating. ... History of passive solar building design; Low-energy house; Passive daylighting; Passive house;

  6. Passive cooling - Wikipedia

    en.wikipedia.org/wiki/Passive_cooling

    Passive cooling covers all natural processes and techniques of heat dissipation and modulation without the use of energy. [1] Some authors consider that minor and simple mechanical systems (e.g. pumps and economizers) can be integrated in passive cooling techniques, as long they are used to enhance the effectiveness of the natural cooling process. [7]

  7. Solar air conditioning - Wikipedia

    en.wikipedia.org/wiki/Solar_air_conditioning

    The chilled water produced is used for large commercial and industrial cooling. Solar thermal energy can be used to efficiently cool in the summer, and also heat domestic hot water and buildings in the winter. Single, double or triple iterative absorption cooling cycles are used in different solar-thermal-cooling system designs.