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Building energy efficiency and thermal comfort in tropical climates Presentation of a numerical approach for predicting the percentage of well-ventilated living spaces in buildings using natural ventilation

机译:热带气候中的建筑能效和热舒适性介绍一种数值方法,用于预测使用自然通风的建筑物中通风良好的居住空间的百分比

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The paper deals with the optimization of building energy efficiency in tropical climates by reducing the period of air-conditioning thanks to natural ventilation and a better bioclimatic design. A bioclimatic approach to designing comfortable buildings in hot and humid tropical regions requires, firstly, some preliminary, important work on the building envelope to limit the energy contributions, and secondly, an airflow optimization based on the analysis of natural ventilation airflow networks. For the first step, tools such as nodal or zonal models have been largely implemented in building energy codes to evaluate energy transport between indoor and outdoor. For the second step, the assessment of air velocities, in three dimensions and in a large space, can only be performed through the use of detailed models such as with CFD. A new modelling approach based on the derivation of a new quantity—i.e. the well-ventilated percentage of a living space is proposed. The well-ventilated percentage of a space allows a time analysis of the air motion behaviour of the building in its environment. These percentages can be over a period such as 1 day, a season or a year. Twelve living spaces with different configuration of openings have been studied to compare the performance of ventilation function of the opening distribution. Results and discussion are presented in the paper. This method is helpful for an architect to design the rooms according to their use, and their environment. Finally, the developed models can be used in building projects to estimate the period of the natural ventilation and to reduce the energy consumption due to air-conditioning.
机译:本文通过自然通风和更好的生物气候设计,通过减少空调周期来解决热带气候下建筑能源效率的优化问题。在炎热潮湿的热带地区设计舒适建筑的生物气候方法首先需要在建筑围护结构上进行一些初步的重要工作,以限制能量的贡献,其次需要基于对自然通风气流网络的分析来优化气流。第一步,在建筑能源法规中已广泛使用诸如节点或分区模型之类的工具,以评估室内和室外之间的能源传输。第二步,只能通过使用详细的模型(例如CFD)对三维和大空间中的风速进行评估。一种基于新数量推导的新建模方法,即建议居住空间的通风良好。通风良好的空间百分比可以对建筑物在其周围环境中的空气运动行为进行时间分析。这些百分比可以超过1天,一个季节或一年之类的时间。研究了十二个具有不同开口构造的居住空间,以比较开口分布的通风功能性能。本文介绍了结果和讨论。这种方法有助于建筑师根据房间的用途和环境来设计房间。最后,所开发的模型可用于建筑项目中,以估计自然通风的时间并减少空调带来的能耗。

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