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Numerical Study of Trombe Wall as a Passive Ventilation System: The Case of Moroccan Climate

机译:Trombe墙作为被动通风系统的数值研究:以摩洛哥气候为例

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Nowadays, as building's energy consumption has become of outstanding importance, passive solar design strategies such as Trombe Walls have received extensive attention from researchers all over the world. In this context, the present work is intended to contribute to a better understanding of the feasibility of using the Trombe wall as an effective natural ventilation technology in order to achieve potential energy savings as well as acceptable thermal comfort conditions. To that aim, a mathematical model describing the thermal performance of the studied wall system was used, and then by means of COMSOL Multiphysics software, a parametric study of a single room with four different wall configurations that differ only in the inlet and outlet air vent position was carried out under six Moroccan climate zones namely: Agadir (Zone I), Tangier (Zone II), Fez (Zone III), Ifrane (Zone IV), Marrakech (Zone V) and Er-rachidia (Zone VI) during both winter and summer seasons. Temperature and velocity fields in the test room incorporating the Trombe wall were analyzed. From the simulation results, some useful conclusions were derived.
机译:如今,随着建筑物的能源消耗变得极为重要,无源太阳能设计策略(如Trombe Walls)已受到全世界研究人员的广泛关注。在这种情况下,本工作旨在更好地理解使用Trombe墙作为有效的自然通风技术的可行性,以实现潜在的节能效果以及可接受的热舒适条件。为此,使用了描述所研究壁系统热性能的数学模型,然后借助COMSOL Multiphysics软件对具有四个不同壁配置的单个房间进行了参数研究,该四个壁配置仅在进风口和出风口有所不同在六个摩洛哥气候带(Agadir(一区),Tangier(二区),Fez(三区),Ifrane(四区),马拉喀什(五区)和Er-rachidia(六区)期间进行了定位冬季和夏季。分析了装有Trombe墙的测试室中的温度和速度场。从仿真结果可以得出一些有用的结论。

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