Influence of trees on the energy consumption of a social housing in mid-western Brazil

R. Domingos, E. Guarda, E. Gabriel, João Sanches
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Abstract

In the last decades, many studies have shown ample evidence that the existence of trees and vegetation around buildings can contribute to reduce the demand for energy by cooling and heating. The use of green areas in the urban environment as an effective strategy in reducing the cooling load of buildings has attracted much attention, though there is a lack of quantitative actions to apply the general idea to a specific building or location. Due to the large-scale construction of high buildings, large amounts of solar radiation are reflected and stored in the canyons of the streets. This causes higher air temperature and surface temperature in city areas compared to the rural environment and, consequently, deteriorates the urban heat island effect. The constant high temperatures lead to more air conditioning demand time, which results in a significant increase in building energy consumption. In general, the shade of the trees reduces the building energy demand for air conditioning, reducing solar radiation on the walls and roofs. The increase of urban green spaces has been extensively accepted as effective in mitigating the effects of heat island and reducing energy use in buildings. However, by influencing temperatures, especially extreme, it is likely that trees also affect human health, an important economic variable of interest. Since human behavior has a major influence on maintaining environmental quality, today's urban problems such as air and water pollution, floods, excessive noise, cause serious damage to the physical and mental health of the population. By minimizing these problems, vegetation (especially trees) is generally known to provide a range of ecosystem services such as rainwater reduction, air pollution mitigation, noise reduction, etc. This study focuses on the functions of temperature regulation, improvement of external thermal comfort and cooling energy reduction, so it aims to evaluate the influence of trees on the energy consumption of a house in the mid-western Brazil, located at latitude 15 ° S, in the center of South America. The methodology adopted was computer simulation, analyzing two scenarios that deal with issues such as the influence of vegetation and tree shade on the energy consumption of a building. In this way, the methodological procedures were divided into three stages: climatic contextualization of the study region; definition of a basic dwelling, of the thermophysical properties; computational simulation for quantification of energy consumption for the four facade orientations. The results show that the façades orientated to north, east and south, without the insertion of arboreal shading, obtained higher values of annual energy consumption. With the adoption of shading, the facades obtained a consumption reduction of around 7,4%. It is concluded that shading vegetation can bring significant climatic contribution to the interior of built environments and, consequently, reduction in energy consumption, promoting improvements in the thermal comfort conditions of users.
树木对巴西中西部社会住房能源消耗的影响
在过去的几十年里,许多研究表明,有充分的证据表明,建筑物周围树木和植被的存在可以通过冷却和加热来减少对能源的需求。在城市环境中使用绿地作为减少建筑物冷负荷的有效策略已经引起了人们的广泛关注,尽管缺乏将一般想法应用于特定建筑物或地点的定量行动。由于高层建筑的大规模建设,大量的太阳辐射被反射并储存在街道的峡谷中。这导致城市地区的气温和地表温度高于农村环境,因此,城市热岛效应恶化。持续的高温导致空调需求时间增加,导致建筑能耗显著增加。一般来说,树木的遮荫减少了建筑对空调的能源需求,减少了墙壁和屋顶上的太阳辐射。城市绿地的增加已被广泛认为是缓解热岛效应和减少建筑物能源使用的有效方法。然而,通过影响温度,特别是极端温度,树木很可能也影响人类健康,这是一个重要的经济变量。由于人类行为对维持环境质量有重大影响,今天的城市问题,如空气和水污染、洪水、过度噪音,对人口的身心健康造成严重损害。众所周知,通过尽量减少这些问题,植被(尤其是树木)可提供一系列生态系统服务,如减少雨水、减少空气污染、减少噪音等。本研究着眼于调节温度、提高外部热舒适和降低制冷能耗的功能,因此旨在评估树木对位于南美洲中心、纬度15°S的巴西中西部房屋能耗的影响。采用的方法是计算机模拟,分析两种场景,处理诸如植被和树荫对建筑能耗的影响等问题。通过这种方式,方法过程分为三个阶段:研究区域的气候背景化;基本住所的定义,热物理性质;四个立面朝向的能耗量化计算模拟。结果表明,不设置遮阳的北、东、南朝向的遮阳区年能耗值较高。由于采用了遮阳,立面的能耗降低了约7.4%。由此得出结论,遮阳植被可以为建筑环境的内部带来显著的气候贡献,从而减少能源消耗,促进用户热舒适条件的改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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