modelPintRadDistrib

Redistribution of radiative heat flow entering a zone on each wall and window - based on surfaces only
Diagram of PintRadDistrib

Extends from RadDistrib (Partial model for the construction of radiative distribution models).

Information

Hypothesis and equations

This model distributes the radiation proportionally to the surface areas.

Notes: usually used to model the distribution of radiative internal gains. For solar short-wave radiation, consider the surfaces absorptances instead.

Bibliography

none

Instructions for use

none

Known limits / Use precautions

none

Validations

Validated model (BESTEST) - Aurélie Kaemmerlen 09/2010

--------------------------------------------------------------
Licensed by EDF under a 3-clause BSD-license
Copyright © EDF 2009 - 2023
BuildSysPro version 3.6.0
Author : Aurélie KAEMMERLEN, EDF (2010)
--------------------------------------------------------------

Parameters

TypeNameDefaultDescription
Opaque surfaces
Integernp (from RadDistrib)6Number of opaque surfaces
Real[np]Sp (from RadDistrib)Walls surface areas
Windows
Integernf (from RadDistrib)1Number of windows
Real[nf]Sf (from RadDistrib)Windows surface areas

Connectors

TypeNameDefaultDescription
Modelica.Blocks.Interfaces.RealOutput[np]FLUXParois (from RadDistrib)Long-wave and/or short-wave radiation transmitted to opaque surfaces / BESTEST : 1-ceiling, 2-floor, 3-North, 4-South, 5-East, 6-West
Modelica.Blocks.Interfaces.RealOutput[nf]FLUXFenetres (from RadDistrib)Long-wave and/or short-wave radiation transmitted to windows/ BESTEST : 1-South OR 1-East, 2-West
Modelica.Blocks.Interfaces.RealInputRayEntrantEntering radiative heat flow to be redistributed

Components

TypeNameDefaultDescription
RealStTotal surface area of walls and windows
Real[np]SFpWalls radiative fractions / BESTEST : 1-ceiling, 2-floor, 3-North, 4-South, 5-East, 6-West
Real[nf]SFfWindows radiative fractions / BESTEST : 1-South OR 1-East, 2-West

Revisions

Amy Lindsay 03/2014 : changement des FluxSolInput et FluxSolOutput en RealInput et RealOutput pour éviter les confusions : ce modèle sert à la redistribution des flux radiatifs tels qu'apports internes