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Practical application of uncertainty analysis and sensitivity analysis on an experimental house

机译:不确定性分析和灵敏度分析在实验房中的实际应用

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摘要

Today, simulation tools are widely used to design buildings because their energy performance is increasing. Simulation is used at different stages to predict the building's energy performance and to improve the thermal comfort of its occupants, but also to reduce the environmental impact of the building over its whole life cycle and lower the cost of construction and operation. Simulation has become an essential decision support tool, but its reliability should not be overlooked. It is important to evaluate the reliability of simulation and measurement as well as uncertainty so as to improve building design. This work aimed to evaluate and order the uncertainty of the simulation results during the design process. A three-step methodology was developed to determine influential parameters in the building's energy performance and to identify the influence of parameter uncertainty on the building performance. This methodology was applied at the INCAS experimental platform of the French National Institute of Solar Energy (INES) in Le-Bourget-du-Lac to identify and measure the uncertainty in a simulation hypothesis. The method can be used during the entire design process of a building, from preliminary sketches to operating phase.
机译:如今,仿真工具由于其能效不断提高而被广泛用于建筑设计。在不同阶段使用模拟来预测建筑物的能源性能并改善其居住者的热舒适性,还可以减少建筑物在整个生命周期中对环境的影响并降低建造和运营的成本。仿真已经成为必不可少的决策支持工具,但其可靠性也不容忽视。重要的是评估模拟和测量的可靠性以及不确定性,以改善建筑设计。这项工作旨在评估和排序设计过程中仿真结果的不确定性。开发了一种三步方法来确定建筑物能源性能中的影响参数,并确定参数不确定性对建筑物性能的影响。该方法已在位于勒布尔热杜拉克的法国国家太阳能研究所(INES)的INCAS实验平台上应用,以识别和测量模拟假设中的不确定性。该方法可在建筑物的整个设计过程中使用,从初步草图到操作阶段。

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