[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Wen et al., 2002 - Google Patents

Absorption of solar energy in a room

Wen et al., 2002

Document ID
3066103698443922536
Author
Wen J
Smith T
Publication year
Publication venue
Solar energy

External Links

Snippet

The purpose of this study is to develop an analysis that allows an examination of the spatial distribution of the absorbed solar energy for a room. The room is composed of several areas that consist of an exterior window where solar beam and diffuse energies originate, an …
Continue reading at www.sciencedirect.com (other versions)

Similar Documents

Publication Publication Date Title
Wen et al. Absorption of solar energy in a room
Arens et al. Modeling the comfort effects of short-wave solar radiation indoors
Kumar et al. Experimental and theoretical studies of various solar control window glasses for the reduction of cooling and heating loads in buildings across different climatic regions
Olofsson et al. Modeling and simulation of the energy use in an occupied residential building in cold climate
Chan et al. A hybrid ray-tracing and radiosity method for calculating radiation transport and illuminance distribution in spaces with venetian blinds
Mottard et al. Thermal simulation of an attached sunspace and its experimental validation
Vaisi et al. Evaluation of Daylight regulations in buildings using daylight factor analysis method by radiance
de la Flor et al. Solar radiation calculation methodology for building exterior surfaces
El-Abd et al. Assessment of skylight design configurations on daylighting performance in shopping malls: A case study
He et al. Modeling solar radiation on a human body indoors by a novel mathematical model
Taleb et al. Optimization of building form to reduce incident solar radiation
Lu et al. Modified calculation of solar heat gain coefficient in glazing façade buildings
Manni et al. Effects of retro-reflective and angular-selective retro-reflective materials on solar energy in urban canyons
Manni et al. Development and validation of a Monte Carlo-based numerical model for solar analyses in urban canyon configurations
Moreno et al. Analytical solutions to evaluate solar radiation overheating in simplified glazed rooms
Ward et al. Daylight simulation workflows incorporating measured bidirectional scattering distribution functions
Tao et al. A model of heat gain calculation for buildings with shuttle louvers: Verification and a case study
Maurer Theoretical and experimental analysis and optimization of semi-transparent solar thermal façade collectors
Grobe Characterization and data-driven modeling of a retro-reflective coating in Radiance
de Almeida Rocha et al. A pixel counting technique for sun patch assessment within building enclosures
Sánchez-González et al. FluxSPT: Tool for heliostat field aiming and flux mapping in solar power tower plants
Tao et al. Model of solar diffuse radiation transmission through circular perforated louvers and experimental verification
Greenup et al. The importance of interior daylight distribution in buildings on overall energy performance
Huang et al. Gauss–Legendre integration of an analytical function to calculate the optical efficiency of a heliostat
Domínguez-Torres et al. Numerical and experimental validation of the solar radiation transfer for an egg-crate shading device under Mediterranean climate conditions