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Estimation of Indoor Temperature for a Passive Solar Building with a Combined Passive Solar System

机译:组合式被动太阳能系统的被动太阳能建筑物的室内温度估算

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Passive solar design strategies for buildings are necessary for annual heating energy demand reduction. This paper presents a mathematical model for interior room temperature calculation of a building that integrates a combined passive solar system consisting of an unvented Trombe wall and a direct passive solar system for direct insolation. The model was applied to a residential building located in Ni, Serbia, which is not additionally heated by conventional fuels. Two variations of a combined passive system were taken into consideration. The first combined passive system consisted of a Trombe wall made of 0.45-m-thick concrete and the second combined passive system consisted of a 0.20-m-thick concrete Trombe wall. To calculate the complex mathematical model, depending on the size of the window opening, window slope (slanting or vertical position), and orientation of the room, two software packages were developed, RMSun and InSunTr. In addition, the indoor air temperatures of a thermally insulated residential building with an unvented Trombe wall and a direct passive solar system for different building orientations and different Trombe wall thicknesses were analyzed during the winter period between January and March.
机译:建筑物的被动太阳能设计策略对于减少年度供暖能源需求是必要的。本文提出了一种用于建筑物内部室温计算的数学模型,该模型将组合的无源太阳能系统(包括未通风的Trombe墙和直接用于直接日照的直接无源太阳能系统)集成在一起。该模型应用于位于塞尔维亚Ni的一栋居民楼,该楼房不再使用常规燃料加热。考虑了组合式无源系统的两个变体。第一个组合式无源系统由0.45米厚的混凝土Trombe墙组成,第二个组合式无源系统由0.20 m厚的Trombe混凝土墙组成。为了计算复杂的数学模型,根据窗户的大小,窗户的坡度(倾斜或垂直位置)以及房间的方向,开发了两个软件包,RMSun和InSunTr。此外,在一月至三月的冬季期间,分析了具有未通风的Trombe墙和直接被动式太阳能系统的隔热住宅建筑的室内空气温度,该太阳能系统针对不同的建筑方向和不同的Trombe壁厚。

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