PERFORMANCE EVALUATION OF THERMAL STORAGE POROUS WALL WITH VENTS USING PASSIVE SOLAR ENERGY

The performance of thermal storage porous wall with vents (gravel material) is analyzed for passive solar heating system under Baghdad climatic conditions by comparing it with conventional wall (Concrete wall) for a variety of control strategies. The variation has been calculated during a period of...

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Main Authors: Saad M. Saleh, Hussein K. Saleem
Format: Article
Language:English
Published: University of Baghdad 2009-06-01
Series:Journal of Engineering
Subjects:
Online Access:https://joe.uobaghdad.edu.iq/index.php/main/article/view/3119
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author Saad M. Saleh
Hussein K. Saleem
author_facet Saad M. Saleh
Hussein K. Saleem
author_sort Saad M. Saleh
collection DOAJ
description The performance of thermal storage porous wall with vents (gravel material) is analyzed for passive solar heating system under Baghdad climatic conditions by comparing it with conventional wall (Concrete wall) for a variety of control strategies. The variation has been calculated during a period of heating season for three months from December (1999) to February (2000) by using computer simulation with MATLAB language (Ver.6.5). A mathematical model containing the governing differential equations of heat transfer through the wall and glazing under unsteady heat flow was performed by using “control volume” technique to obtain the temperature distribution within the wall. The study was carried out for a south facing vertical wall and the effect of different thicknesses, porosities, effect of insulation and glazing layers and effect of vents was also investigated
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spelling doaj.art-02c74681cae04b8bb4eb79e5a18db4e62024-02-25T09:49:43ZengUniversity of BaghdadJournal of Engineering1726-40732520-33392009-06-0115210.31026/j.eng.2009.02.15PERFORMANCE EVALUATION OF THERMAL STORAGE POROUS WALL WITH VENTS USING PASSIVE SOLAR ENERGYSaad M. SalehHussein K. Saleem The performance of thermal storage porous wall with vents (gravel material) is analyzed for passive solar heating system under Baghdad climatic conditions by comparing it with conventional wall (Concrete wall) for a variety of control strategies. The variation has been calculated during a period of heating season for three months from December (1999) to February (2000) by using computer simulation with MATLAB language (Ver.6.5). A mathematical model containing the governing differential equations of heat transfer through the wall and glazing under unsteady heat flow was performed by using “control volume” technique to obtain the temperature distribution within the wall. The study was carried out for a south facing vertical wall and the effect of different thicknesses, porosities, effect of insulation and glazing layers and effect of vents was also investigated https://joe.uobaghdad.edu.iq/index.php/main/article/view/3119Thermal storage, Passive solar, Trombe wall, Porous wall
spellingShingle Saad M. Saleh
Hussein K. Saleem
PERFORMANCE EVALUATION OF THERMAL STORAGE POROUS WALL WITH VENTS USING PASSIVE SOLAR ENERGY
Journal of Engineering
Thermal storage, Passive solar, Trombe wall, Porous wall
title PERFORMANCE EVALUATION OF THERMAL STORAGE POROUS WALL WITH VENTS USING PASSIVE SOLAR ENERGY
title_full PERFORMANCE EVALUATION OF THERMAL STORAGE POROUS WALL WITH VENTS USING PASSIVE SOLAR ENERGY
title_fullStr PERFORMANCE EVALUATION OF THERMAL STORAGE POROUS WALL WITH VENTS USING PASSIVE SOLAR ENERGY
title_full_unstemmed PERFORMANCE EVALUATION OF THERMAL STORAGE POROUS WALL WITH VENTS USING PASSIVE SOLAR ENERGY
title_short PERFORMANCE EVALUATION OF THERMAL STORAGE POROUS WALL WITH VENTS USING PASSIVE SOLAR ENERGY
title_sort performance evaluation of thermal storage porous wall with vents using passive solar energy
topic Thermal storage, Passive solar, Trombe wall, Porous wall
url https://joe.uobaghdad.edu.iq/index.php/main/article/view/3119
work_keys_str_mv AT saadmsaleh performanceevaluationofthermalstorageporouswallwithventsusingpassivesolarenergy
AT husseinksaleem performanceevaluationofthermalstorageporouswallwithventsusingpassivesolarenergy