New approach for Finite Difference Method for Thermal Analysis of Passive Solar Systems

Fuente: arXiv
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Hauptverfasser: Shtrakov, Stanko, Stoilov, Anton
Format: Preprint
Veröffentlicht: 2005
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author Shtrakov, Stanko
Stoilov, Anton
author_facet Shtrakov, Stanko
Stoilov, Anton
contents Mathematical treatment of massive wall systems is a useful tool for investigation of these solar applications. The objectives of this work are to develop (and validate) a numerical solution model for predication the thermal behaviour of passive solar systems with massive wall, to improve knowledge of using indirect passive solar systems and assess its energy efficiency according to climatic conditions in Bulgaria. The problem of passive solar systems with massive walls is modelled by thermal and mass transfer equations. As a boundary conditions for the mathematical problem are used equations, which describe influence of weather data and constructive parameters of building on the thermal performance of the passive system. The mathematical model is solved by means of finite differences method and improved solution procedure. In article are presented results of theoretical and experimental study for developing and validating a numerical solution model for predication the thermal behaviour of passive solar systems with massive wall.
format Preprint
id arxiv_https___arxiv_org_abs_cs_0502059
institution arXiv
publishDate 2005
record_format arxiv
spellingShingle New approach for Finite Difference Method for Thermal Analysis of Passive Solar Systems
Shtrakov, Stanko
Stoilov, Anton
Numerical Analysis
Mathematical treatment of massive wall systems is a useful tool for investigation of these solar applications. The objectives of this work are to develop (and validate) a numerical solution model for predication the thermal behaviour of passive solar systems with massive wall, to improve knowledge of using indirect passive solar systems and assess its energy efficiency according to climatic conditions in Bulgaria. The problem of passive solar systems with massive walls is modelled by thermal and mass transfer equations. As a boundary conditions for the mathematical problem are used equations, which describe influence of weather data and constructive parameters of building on the thermal performance of the passive system. The mathematical model is solved by means of finite differences method and improved solution procedure. In article are presented results of theoretical and experimental study for developing and validating a numerical solution model for predication the thermal behaviour of passive solar systems with massive wall.
title New approach for Finite Difference Method for Thermal Analysis of Passive Solar Systems
topic Numerical Analysis
url https://arxiv.org/abs/cs/0502059