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Normas DIN – AENOR
DIN EN ISO 52022-1:2018-01

DIN EN ISO 52022-1:2018-01

Energy performance of buildings - Thermal, solar and daylight properties of building components and elements - Part 1: Simplified calculation method of the solar and daylight characteristics for solar protection devices combined with glazing (ISO 52022-1:2017); German version EN ISO 52022-1:2017

Performance énergétique des bâtiments - Propriétés thermiques, solaires et lumineuses des composants et éléments du bâtiment - Partie 1: Méthode de calcul simplifiée des caractéristiques solaires et lumineuses pour les dispositifs de protection solaire combinés à des vitrages (ISO 52022-1:2017); Version allemande EN ISO 52022-1:2017

Energieeffizienz von Gebäuden - Wärmetechnische, solare und tageslichtbezogene Eigenschaften von Bauteilen und Bauelementen - Teil 1: Vereinfachtes Berechnungsverfahren zur Ermittlung der solaren und tageslichtbezogenen Eigenschaften von Sonnenschutz in Kombination mit Verglasungen (ISO 52022-1:2017); Deutsche Fassung EN ISO 52022-1:2017

Fecha:
2018-01 /Active
Equivalencias internacionales:

EN ISO 52022-1 (2017-07)

ISO 52022-1 (2017-06)

Relación con otras normas DIN:
Resumen:
This European Standard specifies a simplified method based on the thermal transmittance and total solar energy transmittance of the glazing and on the light transmittance and reflectance of the solar protection device to estimate the total solar energy transmittance of a solar protection device combined with glazing. This document is applicable to all types of solar protection devices parallel to the glazing such as louvre, venetian or roller blinds. The position of the solar protection device can be interior, exterior or between single panes in a dual glazing system. It is applicable when the total solar energy transmittance of the glazing is between 0,15 and 0,85. Venetian or louvre blinds are assumed to be adjusted so that there is no direct solar penetration. It is assumed that for external solar protection devices and for integrated solar protection devices, the space between the solar protection devices and the glazing is unventilated and for internal solar protection devices this space is ventilated.
Keywords:
Buildings, Calculating methods, Combination, Construction, Definitions, Drop wires, Energy consumption, Energy performance, Energy Performance of Buildings, EPB, Equipment, Evaluations, Fins, Glass, Glazing, Light, Light transmission, Light transmittance, Mathematical calculations, Methods of calculation, Parameters, Protective devices, Radiation, Reference methods, Reflectance factor, Roller shutters, Simplifications, Solar energy, Solar radiation, Solar technics, Solar-powered devices, Spectral, Sunlighting, Sunshading, Thermal transmission coefficient, Transmission ratios, Transmittance, Transmittances, Venetian blinds, Window glass
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