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Field study of performance of solar chimney with air-conditioned building

机译:带空调建筑物的太阳能烟囱性能实地研究

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摘要

The study examines the performance of a solar chimney (SC) within an air-conditioned building. To this end, a single-room house of 25 m~3 volume was used. Two configurations of SC were used: the roof solar collector (RSC) composed of CPAC monier concrete tile, 14 cm air gap and gypsum board, and the modified trombe wall (MTW) composed of a masonry wall, 14 cm air gap and gypsum board. To control the induced air flow rate, as excess incoming hot ambient air will increase air-conditioner (AC) load, the size of the SC inlet opening was used as a means of ventilation control and three opening sizes were considered per each SC configuration. Experiments were performed throughout a period of six months (March-September). A split type AC of 1 t nominal capacity was installed. Comparisons between a common house and a solar chimney house (SCH) conducted using days with relatively similar ambient conditions demonstrated that a SCH could reduce the average daily electrical consumption of an AC by 10-20%, the ventilation fan saving must also be added. The appropriate size of inlet openings of a SC is 5 x 5 cm~2, which induces about 3-8 m~3/h/SC unit. The SC is very efficient for decreasing the AC load, namely when the AC is turned on at the beginning of afternoon (1 p.m.) as no heat is stored inside the room. In this operating mode the saving is much higher, about 30%. Consequently, the SCH is highly suitable for a hot climate as it could be used for both an AC and a non-AC building. The design recommendations formulated here could be used to conduct a realistic design depending on the requirements of the house's owner.
机译:这项研究检查了空调建筑物内太阳能烟囱(SC)的性能。为此,使用了容积为25 m〜3的单室房屋。使用了两种配置的SC:由CPAC monier混凝土瓦,14厘米气隙和石膏板组成的屋顶太阳能集热器(RSC),以及由砖石墙,14厘米气隙和石膏板组成的改良的斜视墙(MTW)。 。为了控制诱导的空气流量,由于过量的传入热环境空气会增加空调(AC)的负荷,因此将SC进气口的尺寸用作通风控制的手段,并且每种SC配置都考虑了三种开口尺寸。实验进行了六个月(3月至9月)。安装了额定容量为1 t的分体式AC。使用环境条件相对相似的几天对普通房屋和太阳能烟囱房屋(SCH)进行的比较表明,SCH可以将AC的平均每日用电量减少10-20%,还必须增加通风扇的节省。 SC的入口的适当尺寸是5×5cm 2,这引起大约3-8m 3 / h / SC单位。 SC对于降低交流负载非常有效,即在下午开始时(下午1点)打开交流电源时,因为室内没有热量存储,因此SC非常有效。在这种操作模式下,节省的成本要高得多,约为30%。因此,SCH非常适合炎热的气候,因为它既可以用于AC建筑,也可以用于非AC建筑。根据房屋所有者的要求,此处提出的设计建议可用于进行实际设计。

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