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Impact of building design and occupancy on office comfort and energy performance in different climates

机译:在不同气候下,建筑设计和使用率对办公室舒适度和能源性能的影响

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摘要

The building sector has a significant share in a county's total greenhouse gas emissions, and as a reaction to the Kyoto commitment most countries are constantly adjusting building energy requirements in order to reduce greenhouse gas emissions and mitigate the climate change. While it is easier to set standards for the building fabric and for technical systems, the impact of occupants on comfort and energy performance in buildings has proven to be important, but is a lot harder to account for. This paper therefore aims to investigate the magnitude of influence of occupants in relation to climate and architectural design on thermal comfort and CO_2 emissions in offices in different climate zones of the world. The aim is to identify typical patterns and key parameters for optimisation. For this purpose, a parametric study for a typical cellular office room has been conducted using the simulation software EnergyPlus. Two different occupant scenarios are each compared with three different architectural design variations and modelled in the context of three different locations for the IPCC climate change scenario A2 for 2030. The evaluation of the results is focused on two different modes of operation. For natural ventilation adaptive thermal comfort according to ASHRAE Standard 55 has been evaluated, and for mixed mode operation final energy consumption and resulting CO_2 emissions. The results indicate a first approach to estimate comfort levels based on climatic data, architectural design priorities and occupancy. Additionally, warmer climates seem to have larger optimisation potential for comfort and energy performance in offices compared to colder climates.
机译:建筑部门在该县的温室气体总排放量中占有很大份额,作为对《京都议定书》承诺的回应,大多数国家正在不断调整建筑能源需求,以减少温室气体排放并缓解气候变化。虽然更容易为建筑结构和技术系统设定标准,但事实证明,居住者对建筑物舒适度和能源性能的影响很重要,但要解决的困难很多。因此,本文旨在调查居住者在全球不同气候区域办公室中与气候和建筑设计有关的热舒适度和CO_2排放量的影响程度。目的是确定优化的典型模式和关键参数。为此,已经使用模拟软件EnergyPlus对典型的蜂窝办公室进行了参数研究。将两种不同的居住者情景与三种不同的建筑设计变型进行比较,并针对IPCC 2030年气候变化情景A2在三个不同的位置进行建模。结果评估着重于两种不同的操作模式。对于自然通风,已经评估了符合ASHRAE标准55的自适应热舒适性,对于混合模式运行,其最终能耗和产生的CO_2排放也得到了评估。结果表明,第一种基于气候数据,建筑设计优先级和占用率估算舒适度的方法。此外,与寒冷的气候相比,温暖的气候在办公室的舒适度和能源性能方面似乎具有更大的优化潜力。

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