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Canadian initial-condition climate ensemble: Hygrothermal simulation on wood-stud and retrofitted historical masonry

机译:加拿大初始条件气候集合:木质螺栓和改装历史砌体上的湿热仿真

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Given the long lifespan of buildings it becomes inevitable to assess the impact of climate change when designing building envelopes or retrofitting solutions. Hygrothermal simulations would benefit from using a climate ensemble to account for the large uncertainties that come with modelled climate data. However, this has been rarely done so far, and no state-of-the-art methodology exists to implement ensemble data in hygrothermal simulations. This paper presents the application of a Canadian initial-condition ensemble CanRCM4 LE in hygrothermal (HAM) modelling. A brick-clad wood-stud wall assembly and historical solid masonry wall, before and after retrofitting, are analysed for Ottawa, CA. Variations in the HAM model are studied to evaluate whether the ensemble can be represented by one smaller "reduced" ensemble for different studies. And, the potential of climate-based indices to predict this "reduced" ensemble is studied. Further, the uncertainty of the ensemble is analysed, as well as the climate change signal of the damage functions. It is found that the application of a climate ensemble is highly valuable for HAM modelling, as it is able to account for the high uncertainty of climate change data. To maintain the level of information, it is recommended to perform HAM simulations using the entire ensemble. However, there is potential to select a "reduced" ensemble to represent spread of the climate change signal.
机译:鉴于建筑物的长寿,在设计建筑包络或改造解决方案时,评估气候变化的影响变得不可避免。湿热模拟将受益于使用气候集合来解释具有建模气候数据的大不确定性。然而,到目前为止,这已经很少完成,并且没有现有的现实方法来实现湿热模拟中的集合数据。本文介绍了加拿大初始条件集合CANRCM4 LE在湿热(HAM)建模中的应用。在渥太华,加利福尼亚州之前和改装之前和改装之前和之后,砖砌木壁组装和历史固体砌体墙。研究了HAM模型的变化,以评估集合是否可以由不同研究的一个较小的“减少”集合表示。而且,研究了气候基础指数预测这一“减少”集合的潜力。此外,分析了集合的不确定性,以及损伤功能的气候变化信号。结果发现,气候集合的应用对于火腿建模非常有价值,因为它能够考虑气候变化数据的高不确定性。为了维护信息级别,建议使用整个集合进行火腿仿真。然而,有可能选择“减少”的集合以表示气候变化信号的传播。

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