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Simple cubic structure foam model has been used to estimate the view factor.
Accurate algorithms are used in computing the configuration (view factor) integrals.
Third, development layers, including the sky view factor and impervious surface ratio, were established.
Errors for the two pyrometers based on varied target surface emissivity, view factor and ambient temperature were calculated.
A description is given of a view factor technique for solving time-dependent, non-linear radiative transfer problems.
This study proposes the use of area-averaged sky view factor (SVFa), instead of the traditional single-point sky view factor from fisheye photographs (SVFsp), as the indicator for measuring the shading level at various areas in parks.
The studied parameters are height to width ratio of an urban canyon, sky view factor, greenery percentage, pavement material properties.
Simplified radiation view factor dependent on pulling-down rate in pilot-scale vertical Bridgman system was derived.
The view factor approach was applied to evaluate the UV irradiance in a three-dimensional space with different louver configurations.
First, the urban morphology indicators are constructed, such as the sky view factor and the shadow factor of buildings.
A method of multi-tracing simulation to calculate the sky view factor and radiative heat transfer is established.
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