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Sunspace coupling with hyper-insulated buildings: Investigation of the benefits of heat recovery via controlled mechanical ventilation

机译:太阳空间与超隔热建筑的耦合:通过受控机械通风进行热回收的益处的研究

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An experimental study was conducted to examine the energetic and ergonomic impacts of an optimized mechanically controlled ventilation system, implemented on the partition wall between a hyper-insulated test building and the attached sunspace, to overcome most of the inherent limitations of a purely radiative heat transfer in presence of very low thermal transmittance envelope.The system comprised two vented holes (at floor and ceiling level), piloted by a smart controller on the basis of the temperature difference between the two air volumes. The threshold was progressively reduced from 2 degrees C to 0.5 degrees C to ameliorate the energy performance without trespassing the comfort boundaries. Calls for extra heating from the active technical system (electric radiators) were thus minimized, regardless of the climatic conditions: the energy consumption (normalized over the indoor-outdoor daily average temperature difference and over the daily mean solar irradiation) decremented by 36% and 66% respectively compared to the 1 degrees C and 2 degrees C configurations, which, in turn, exhibited similar performance. The ergonomic penalty due to thermal overshooting was statistically acceptable.The outcomes were compared to those of a previous monitoring run on the same case study, with 20% less glazed surface: the new configuration more than halved the energy expenditure.Finally, the albedo of the surrounding materials was shown to be a key-player: even under extremely cold and overcast conditions, the sunspace temperature rose up to 40 degrees C when fresh snow layered all around the perimeter. Further investigation could support broadening the spectrum of potentially efficient applications.
机译:进行了一项实验研究,以研究优化的机械控制通风系统的能量和人体工程学影响,该系统在超隔热测试楼和相连的太阳空间之间的隔墙上实施,以克服纯辐射传热的大多数固有限制该系统包括两个通风孔(在地板和天花板上),由智能控制器根据两个风量之间的温差进行控制。阈值从2摄氏度逐渐降低到0.5摄氏度,以改善能量性能而又不超出舒适性界限。因此,无论气候条件如何,都需要将主动技术系统(电散热器)产生的额外热量的要求降到最低:能耗(在室内-室外日平均温度差和日均太阳辐射量之上标准化)减少了36%,与1摄氏度和2摄氏度的配置相比,性能分别达到66%。热超调所带来的人体工程学损失在统计上是可以接受的,将结果与同一案例研究中先前的监测结果进行了比较,釉面减少了20%:新配置将能量消耗减少了一半以上。周围的材料被证明是关键因素:即使在极端寒冷和阴暗的条件下,当周围周围都积雪时,太阳空间温度也上升到40摄氏度。进一步的研究可以支持扩大潜在有效应用的范围。

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