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Thermal performance of building attached sunspace in Jordan climate

机译:约旦气候中建筑物附着的太阳空间的热性能

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The thermal performance of a sunspace attached to living room located in Amman -Jordan has been investigated in the present study. DEROB- LTH is used to estimate the thermal performance in terms of cooling and heating loads required for the indoor climate. The annual heating and cooling loads are obtained under climatological prevalent conditions. The main contribution of this passive solar design is to reduce heating loads in winter and to minimize overheating during summer period. Six configurations that differ by the ratio of glazed surface area to opaque surfaces area are studied. The effect of orientation of sunspace, opaque wall and floor absroptivity coefficients and number of glass layers on the thermal performance is evaluated. Results show that the sunspace reduces the heating load during the winter while it creates a serious overheating problem during summer. The contribution of reducing heating requirement increases with increasing the ratio of glazed surface to opaque surface area. Also the optimal contribution obtained when sunspace oriented to the south. Two passive cooling techniques are proposed and evaluated to overcome the summer overheating problem. Also, a passive heating technique is proposed to minimize the thermal losses during winter nighttime. Internal shading and night ventilation successfully minimize the overheating problem. Employing the three passive techniques with sunspace, results show that as high as 42% reductions in annual heating and cooling load can be achieved when single clear glass sunspace oriented to the south.
机译:在本研究中,研究了附着在位于安曼-乔丹的客厅的太阳空间的热性能。 DEROBLTH用于根据室内气候所需的制冷和制热负荷估算热性能。每年的加热和冷却负荷是在气候普遍条件下得出的。这种无源太阳能设计的主要作用是减少冬季的热负荷,并最大程度减少夏季的过热。研究了六种结构,它们的上釉表面积与不透明表面积之比不同。评估了太阳空间的方向,不透明的墙壁和地板的吸收系数以及玻璃层数对热性能的影响。结果表明,阳光空间减少了冬季的热负荷,而夏季则造成了严重的过热问题。减少加热需求的贡献随着釉面与不透明表面积之比的增加而增加。当太阳空间指向南方时,也会获得最佳贡献。提出并评估了两种被动冷却技术来克服夏季过热问题。另外,提出了一种被动加热技术以最小化冬季夜间的热损失。内部遮光和夜间通风可以成功地将过热问题降到最低。使用三种带太阳空间的被动技术,结果表明,当单个透明玻璃太阳空间朝向南方时,每年的供暖和制冷负荷最多可减少42%。

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