Coupling a sunspace to a hyper insulated building: Field tests of different configurations to optimize the energy and comfort performance

G. Ulpiani, C. di Perna, Alessandra Romagnoli, S. Summa
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Abstract

An experimental study was conducted on a hyper insulated building coupled with a sunspace, to investigate the role of the major design parameters (depth, glass percentage and typology, etc.) and mechanically controlled convective transfer (VMC) on the energy performance. Based on 132 dynamic simulations, a modifiable sunspace was built on the sun-exposed side of a nZEB mock-up in Central Italy and monitored via an extensive sensor network. The conditioning system tracked the seasonal set point via a bang-bang controller, while the VMC was governed by a bespoke temperature-driven logic. In a previous run, irradiative and combined irradiative-convective modes were tested on a 30% glazed sunspace: VMC was found to dump the daily energy consumption to -27%. Then; a second monitoring campaign compared the 30% and 50% configurations. The former guaranteed very stable indoor conditions (20.1±0.3°C), yet the latter still preserved global comfort at a remarkably lower (-40%) energy expenditure.
将阳光空间与超绝缘建筑相结合:对不同配置进行现场测试,以优化能源和舒适性能
我们对一座带有阳光空间的超绝缘建筑进行了实验研究,以研究主要设计参数(深度、玻璃百分比和类型等)和机械控制对流传输(VMC)对能源性能的影响。在132次动态模拟的基础上,在意大利中部的nZEB模型的太阳暴露侧建立了一个可修改的太阳空间,并通过广泛的传感器网络进行监测。调节系统通过“bang-bang”控制器跟踪季节设定点,而VMC则由定制的温度驱动逻辑控制。在之前的运行中,在30%的玻璃太阳空间上测试了辐射和组合辐射对流模式:VMC被发现将每日能耗降至-27%。然后;第二次监测活动比较了30%和50%的配置。前者保证了非常稳定的室内条件(20.1±0.3°C),而后者仍然在显著降低(-40%)的能源消耗下保持了整体舒适性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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