Using the utility method - F-scheme in studying the long-term thermal performance of the heat-storage and transmitting wall (Trombe wall)

Ruqaya Razzaq Rustum, Abdulsalam D. Al-Nadawi
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Abstract

With the development of building construction engineering and the way to obtain energy from natural sources, the sun has become an important source to avail from thermal energy. In this research, the study of the long-term thermal performance of a passive solar heating system containing an absorber and storage wall was done by using the general design utilizability Method The equations of the mathematical model for this system were solved using the MATLAB environment program. In order to calculate the values of the solar refractive index (f) for this system for the four months of the winter season (November to February). The climatic conditions during these months are the daily values based on the monthly average in the city of Kut (Iraq). Since the best type of wall is the concrete wall, changes are made to this type of wall. A number of variables that affect the performance of the wall have been changed, including in it = wall area, wall thickness. The results showed that increasing the wall area and decreasing the thickness leads to an increase in the value of the solar refractive index, and the maximum values of the solar refractive factor were found during  November, and the concrete material is the best performing material among brick and stone material, according to previous studies.
利用效用法- f方案研究蓄热墙(特罗姆墙)的长期热工性能
随着建筑工程的发展和从自然资源中获取能源的方式的发展,太阳已成为利用热能的重要来源。本研究采用一般设计可利用性方法,对含吸收体和蓄热壁的被动式太阳能采暖系统的长期热性能进行了研究,并利用MATLAB环境程序求解了该系统的数学模型方程。为了计算该系统在冬季(11月至2月)四个月的太阳折射率(f)值。这几个月的气候条件是根据库特市(伊拉克)的月平均值计算的每日数值。由于最好的墙类型是混凝土墙,因此对这种类型的墙进行了更改。许多影响管壁性能的变量已经改变,其中包括=壁面积,壁厚。结果表明:增大墙体面积和减小墙体厚度会导致太阳折射率值的增大,并且在11月份太阳折射率值达到最大值,根据前人的研究,混凝土材料是砖石材料中表现最好的材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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