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Use of natural ventilation in reducing building energy consumption in single-family housing in Brazil

机译:利用自然通风减少巴西单户住宅的建筑能耗

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This paper presents the analysis of thermal comfort in single-family housing in Brazil, by quantifying the heat loss due to the use of natural ventilation. Thus, it was investigated the relationship of thermal comfort with the possibility of reducing the energy consumption of active conditioning systems. The method comprises the computer simulation of a 63m2 single-family housing construction, using the software EnergyPlus. The simulated model has no active conditioning system. Natural ventilation was simulated with EnergyPlus through the algorithm, AirflowNetwork, a model of ventilation network, where mass flows through openings and loss of thermal load due to pressure differences in building are estimated. The condition for opening the window depends on external temperature and a prescribed maximum internal temperature, which supposes the use of natural ventilation only as daytime passive cooling tool. For the study two cases were simulated by varying the thermal properties of the constituent components of the roofing and of vertical components. Variations studied represent the application of different constructive elements of practice in the construction market in the country. The options described were also simulated for three Brazilian cities with different climates, in the situations ventilated and unventilated, totaling 12 different simulations. The comparative analysis was performed by checking the comfort hours and simultaneously quantifying the sensible heat loss due to the use of natural ventilation, for each simulated event. Results indicate the importance of natural ventilation combined with the use of adaptive models for thermal comfort and the possibility of significant reduction in energy consumption resulting from this design strategy.
机译:本文通过量化由于使用自然通风造成的热损失,对巴西单户住宅的热舒适性进行了分析。因此,研究了热舒适性与减少主动调节系统能耗之间的关系。该方法包括使用EnergyPlus软件对63m 2 单户住宅结构进行计算机模拟。模拟模型没有主动调节系统。通过EnergyPlus算法AirflowNetwork(一种通风网络模型)对自然通风进行了模拟,其中,质量流经开口并估计了由于建筑物中的压差而导致的热负荷损失。打开窗户的条件取决于外部温度和规定的最高内部温度,这假定仅将自然通风用作白天的被动冷却工具。在本研究中,通过改变屋顶的组成部分和垂直部分的热特性来模拟了两种情况。研究的差异代表了该国建筑市场中实践的不同构成要素的应用。所描述的选项还针对三个具有不同气候的巴西城市进行了模拟,包括通风和非通风情况,共有12种不同的模拟。对于每个模拟事件,通过检查舒适时间并同时量化由于使用自然通风而产生的显热损失来进行比较分析。结果表明,自然通风的重要性以及结合使用自适应模型以实现热舒适性以及该设计策略可显着降低能耗的可能性。

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