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Effects of vegetation, structural and human factors on the thermal performance of residences in a semi-arid environment.

机译:植被,结构和人为因素对半干旱环境中住宅热性能的影响。

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The objectives of the study were to examine and quantify the relationship between vegetation and the thermal performance of residences in a hot arid environment. Also explored were structural and human influences on residential energy consumption. A primary goal was to determine how much energy savings could be realized through strategic planting of vegetation. This study sought to validate previous simulation and modeling studies that documented annual savings of 2–11% on residential cooling loads. Also examined was whether shrubs and grass could provide a benefit similar to that of trees, assessing the importance of evapotranspiration versus shading. An empirical study was conducted using 105 existing homes in the metropolitan area of Tucson, Arizona. Data included construction type, amenities, living habits of occupants, and energy consumption for heating and cooling over a two-year period. These data were analyzed with a combination of bivariate and multivariate analyses to examine direct correlations between specific variables and energy consumption and the relative importance of each variable. These analyses were unable to document any measurable savings in summer cooling loads as a result of vegetation adjacent to the house, and the presence of trees actually increased the winter heating load by 2%. While trees provide important shading benefits, and can reduce the direct solar gain through the windows of a house, analysis demonstrated that structural and human factors were the most important aspects in residential energy consumption. The size of the house is of primary importance. Houses with evaporative cooling consumed significantly less energy than those with air conditioning. Thermostat settings and habits regarding thermostat operation were the most critical human factors. Occupants who adjusted their thermostats a few degrees cooler in winter and warmer in summer realized measurable savings. Occupants who turned their heating and cooling equipment off when they were not home used significantly less energy for heating and cooling. These factors far outweighed any impact from vegetation on annual energy consumption. While trees should not be considered as a primary means of reducing annual energy consumption, properly placed vegetation can provide aesthetic benefits and increase the thermal comfort of the occupants.
机译:该研究的目的是检查和量化植被与炎热干旱环境中住宅的热性能之间的关系。还探讨了结构和人为因素对住宅能耗的影响。一个主要目标是确定通过战略性种植植被可以实现多少能源节省。本研究试图验证以前的模拟和建模研究,这些研究记录了住宅制冷负荷每年节省2-11%的情况。还检查了灌木和草丛是否可以提供与树木相似的益处,从而评估了蒸散与遮荫的重要性。使用亚利桑那州图森市区的105个现有房屋进行了实证研究。数据包括建筑类型,便利设施,居住者的生活习惯以及两年内供暖和制冷的能耗。通过双变量和多变量分析相结合的方法对这些数据进行了分析,以检验特定变量与能耗之间的直接相关性以及每个变量的相对重要性。这些分析无法证明由于房屋附近的植被而导致夏季制冷负荷的任何可衡量的节省,并且树木的存在实际上使冬季采暖负荷增加了2%。尽管树木提供了重要的遮阳益处,并且可以减少房屋窗户的直接日照量,但分析表明,结构和人为因素是住宅能耗中最重要的方面。房子的大小至关重要。蒸发制冷的房屋比空调的能耗低得多。温控器设置和有关温控器操作的习惯是最关键的人为因素。在冬天将恒温器的温度调低几度,在夏天将温度调高一些的人,则可节省大量费用。在不在家时关闭供暖和制冷设备的居住者所用的供暖和制冷能量大大减少。这些因素远远超过了植被对年能耗的影响。虽然不应该将树木视为减少年度能源消耗的主要手段,但正确放置的植被可以提供美观的好处并增加居住者的热舒适度。

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