温暖气候下房屋动态热行为的模拟:以轻质围护结构中的热质量为例

C. Tonelli, I. Montella
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摘要

仿真结果与实测性能的比较通常是一个开放性的科学问题,对于实现NZEB性能目标至关重要。本文讨论了与住宅建筑相关的这一问题,并以罗马理工大学开发的住宅原型建筑“RhOME for density”为例进行了研究,该建筑是2014年欧洲太阳能十项竞赛的获胜者。在地中海气候中,利用体量结合自然交叉通风来控制室内小气候,可以非常有效地减少暖通空调的使用。因此,在围护结构的内表面引入了一个€œmassive层,不仅有助于围护结构的透射率值和热波的移相,而且在夏季和冬季都可以作为热减震器来调节内部温度。这个实验性的信封在凡尔赛的比赛中进行了为期两周的测试。虽然原型热性能仅在比赛期间进行监测,而不是在较长时间内进行监测,但初步结果提供了如何确定热质量对室内舒适性贡献的信息。在施工阶段之前,通过TRNSYS进行了深入的模拟。本文提出了监测性能和模拟性能之间的比较,以测量获得室内舒适性能的数值改进所需的质量。
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Simulation of Dynamic Thermal Behaviour for Housing in Warm Climate: The Case of Thermal Mass in Lightweight Envelopes
Comparison between simulation results and measured performances is usually an open scientific problem, crucial to achieving the goal of NZEB performance. This paper addresses this issue in relation to residential buildings, using as a case study “ RhOME for denCity ”, the housing prototype developed by Roma TRE University and winner of Solar Decathlon Europe 2014. In a Mediterranean climate, the use of the mass combined with natural cross ventilation to control the indoor microclimate can be very effective in reducing HVAC use. Therefore, a “massive layer” was introduced in the inner surface of the envelope to not only contribute to the envelope transmittance value and the shifting phase of the thermal waves, but also as a thermal shock absorber to adjust the internal temperature, in both summer and winter. This experimental envelope was tested over two weeks during the competition in Versailles. Although prototype thermal behaviour was monitored only during the competition, and not over an extended period, initial results provide information on how to size the thermal mass contribution for indoor comfort. In-depth simulation through TRNSYS was run prior to the construction phase. This paper presents the comparison between monitored performance and simulations in order to measure the amount of mass needed to obtain a numerical improvement in indoor comfort performance.
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