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Building indoor model in PALM-4U: indoor climate, energy demand, and the interaction between buildings and the urban microclimate

机译:在棕榈-4U建立室内型号:室内气候,能源需求和建筑物与城市小循环的互动

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There is a strong interaction between the urban atmospheric canopy layer and the building energy balance. The urban atmospheric conditions affect the heat transfer through exterior walls, the long-wave heat transfer between the building surfaces and the surroundings, the short-wave solar heat gains, and the heat transport by ventilation. Considering also the internal heat gains and the heat capacity of the building structure, the energy demand for heating and cooling and the indoor thermal environment can be calculated based on the urban microclimatic conditions. According to the building energy concept, the energy demand results in an (anthropogenic) waste heat; this is directly transferred to the urban environment. Furthermore, the indoor temperature is re-coupled via the building envelope to the urban environment and affects indirectly the urban microclimate with a temporally lagged and damped temperature fluctuation. We developed a holistic building model for the combined calculation of indoor climate and energy demand based on an analytic solution of Fourier's equation and implemented this model into the PALM model.
机译:城市大气遮盖层和建筑能量平衡之间存在强烈的相互作用。城市大气条件通过外墙影响传热,建筑物表面和周围环境之间的长波热传递,短波太阳能散热,以及通风的热传输。考虑到建筑物结构的内部热量和热量,加热和冷却的能量需求和室内热环境可以基于城市小跨界条件计算。根据建筑能量概念,能源需求导致(人为)废热;这直接转移到城市环境。此外,室内温度通过建筑物包络重新连接到城市环境,间接影响城市小循环,随着时间上滞后和阻尼的温度波动。我们基于傅里叶方程的分析解决方案,开发了一个整体建筑模型,用于基于傅里叶方程的分析解决方案,并将该模型实施到Palm模型中。

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