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Calibrated hygrothermal simulation models for historical buildings

机译:校准过的历史建筑的湿热模拟模型

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Historic buildings are a living representation of our past and it is our duty to ensure that future generations have access to their heritage. In order to accomplish this, it is necessary to determine the conditions that the buildings are in and, if needs be, to make the necessary changes. In this latter stage, it is helpful to have a validated whole-building hygrothermal model since it takes into consideration most of the processes that affect their hygrothermal performance, thus allowing us to choose the most appropriate interventions.This paper aims to establish a validation process for historic buildings based on annual indoor conditions using simulation software. Hence, the indoor conditions is a 13thcentury church in Lisbon were monitored over a year. The model accuracy was assessed by comparing the simulated and measured temperature and water-vapour pressure, and quantified using the coefficient of determination, coefficient of variation of the root mean square error, normalized mean bias error and goodness of fit. The hygrothermal model was then validated by comparison against other models in literature and existing standards/guidelines.Four outdoor weather files were simulated to show the importance of monitoring the outdoor climate as closely as possible to the case-study. The soil/slab interface temperature was obtained using six different models. A sensitivity analysis was developed to optimize some of the inputs. Ultimately, the church hygrothermal model was validated. However, in hygrothermal models the simulation time can be long, therefore, a simplified model was developed using two of the four tested simplifications.
机译:历史建筑是我们过去的活生生的代表,我们的责任是确保子孙后代获得其遗产。为了做到这一点,有必要确定建筑物所处的条件,并根据需要进行必要的更改。在后一个阶段,建立一个经过验证的整栋建筑物的湿热模型是有帮助的,因为它考虑了影响其湿热性能的大多数过程,因此使我们可以选择最合适的干预措施。本文旨在建立一个验证过程基于年度室内条件的历史建筑使用模拟软件。因此,室内条件是对里斯本的一座13世纪教堂进行了一年的监控。通过比较模拟和测量的温度以及水蒸气压力来评估模型的准确性,并使用确定系数,均方根误差的变异系数,归一化平均偏差误差和拟合优度来量化模型准确性。然后通过与文献和现有标准/指南中的其他模型进行比较来验证湿热模型。对四个室外天气文件进行了模拟,以显示尽可能密切地根据案例研究监视室外气候的重要性。使用六个不同的模型获得了土壤/平板界面温度。进行了灵敏度分析以优化某些输入。最终,对教堂的湿热模型进行了验证。但是,在湿热模型中,仿真时间可能会很长,因此,使用四个经过测试的简化中的两个开发了简化模型。

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