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The impact of indoor thermal conditions, system controls and building types on the building energy demand

机译:室内热条件,系统控制和建筑物类型对建筑物能源需求的影响

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It is possible to evaluate the energy demand as well as the parameters related to indoor thermal comfort through building energy simulation tools. Since energy demand for heating and cooling is directly affected by the required level of thermal comfort, the investigation of the mutual relationship between thermal comfort and energy demand (and therefore operating costs) is of the foremost importance both to define the benchmarks for energy service contracts and to calibrate the energy labelling according to European Directive 2002/92/CE. The connection between indoor thermal comfort conditions and energy demand for both heating and cooling has been analyzed in this work with reference to a set of validation tests (office buildings) derived from a European draft standard. Once a range of required acceptable indoor operative temperatures had been fixed in accordance with Fanger's theory (e.g. -0.5 < PMV < -0.5), the effective hourly comfort conditions and the energy consumptions were estimated through dynamic simulations. The same approach was then used to quantify the energy demand when the range of acceptable indoor operative temperatures was fixed in accordance with de Dear's adaptive comfort theory.
机译:通过建筑能源模拟工具,可以评估能源需求以及与室内热舒适性相关的参数。由于供暖和制冷的能源需求直接受到所需的热舒适度的影响,因此,对热舒适度与能量需求(以及因此的运行成本)之间的相互关系进行调查对于确定能源服务合同的基准至关重要。并根据欧洲指令2002/92 / CE校准能源标签。在这项工作中,参考了一组来自欧洲草案标准的验证测试(办公大楼),分析了室内热舒适条件与供暖和制冷能源需求之间的联系。一旦按照Fanger的理论确定了所需的可接受的室内工作温度范围(例如-0.5 <PMV <-0.5),便会通过动态仿真估算有效的小时舒适条件和能耗。然后,根据de Dear的适应性舒适性理论确定了可接受的室内工作温度范围时,使用相同的方法来量化能量需求。

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