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Effect of disturbance on thermal response test, part 2: Numerical study of applicability and limitation of infinite line source model for interpretation under disturbance from outdoor environment

机译:扰动对热响应测试的影响,第2部分:无限线源模型在室外环境扰动下解释的适用性和局限性的数值研究

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The approximated infinite line source (ILS) model is widely used to interpret thermal response tests (TRTs). It assumes a constant heat flux from the source. However, this assumption is violated in real field conditions by the heat exchange between the circulating fluid and the outdoor environment in an above-ground TRT setup. This results in a fluctuating behavior of sequential estimation and estimation error. In this study, we quantitatively examined the effect of disturbance from outdoor environment on This, especially when TRTs are interpreted by the ILS model, using numerical methods. An analytical model that takes disturbance into account was incorporated as the boundary condition of a numerical model. Using typical synthetic weather data of different seasons and 36 cases of measured weather data, numerical TRTs were conducted and interpreted. Some characteristic behavior of interpretation related to weather conditions was explained and changes in error range with testing duration were analyzed to clarify the applicability and limitation of the interpretation using the ILS model. The results showed that at least 60 h of TRT is required to obtain results within the error range of +5% compared with the reference case. Additionally, some practical suggestions regarding conducting and interpreting TRTs are provided. (c) 2015 Elsevier Ltd. All rights reserved.
机译:近似无限线源(ILS)模型被广泛用于解释热响应测试(TRT)。它假定来自源的恒定热通量。但是,在地面条件下的TRT设置中,循环流体与室外环境之间的热交换违反了这一假设。这导致顺序估计和估计误差的波动行为。在这项研究中,我们定量研究了来自室外环境的干扰对此的影响,尤其是当ILS模型使用数值方法解释TRT时。将考虑了扰动的解析模型作为数值模型的边界条件。使用不同季节的典型合成气象数据和36例实测气象数据,进行了数字TRT并进行了解释。解释了与天气条件有关的解释的一些特征行为,并分析了误差范围随测试持续时间的变化,以阐明使用ILS模型进行解释的适用性和局限性。结果表明,与参考案例相比,至少需要60 h的TRT才能获得在+ 5%的误差范围内的结果。此外,提供了一些有关进行和解释TRT的实用建议。 (c)2015 Elsevier Ltd.保留所有权利。

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