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Model Experiment for Rural Building Performance in the Dry Season of Tropical Environment

机译:旱季热带环境中农村建筑业绩的模型试验

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Traditional houses of Indonesia were designed according to the rural environment, which had the maximum shading, natural ventilation, and minimum building heat gain. Currently, high-density buildings and exposed to solar radiation because of minimum vegetation shading are significant factors affecting energy efficiency. Indonesia is in a tropical climate, which is represented by geographical altitude, lowland, and upland. The altitude difference effects on environment variation. The study aimed to evaluate the building's thermal performance under the natural lighting effect of traditional tropical houses using the experimental model and the Ecotect Analysis program based on the field study data. One of Indonesia's traditional houses, Javanese house, was taken as the study object. The study recorded the shading of the Javanese traditional building model in the relationships with solar radiation penetration and natural lighting interruption. The results showed that the difference in solar radiation distribution on the roof surface between lowland and upland does not affect shading distribution. The building transition space has the capability to change the air temperature and reduces the glare from daylight or radiation effect from sunlight. Both in lowland and in upland, lower sky clearness effects on dropped room natural lighting for much time. Moreover, the unshaded and the higher illuminance areas receive a higher temperature.
机译:印度尼西亚的传统房屋根据农村环境设计,具有最大的阴影,自然通风和最低建筑物热量增益。目前,高密度建筑物和暴露于太阳辐射,因为最小植被着色是影响能量效率的重要因素。印度尼西亚是一种热带气候,由地理高度,低地和高地代表。海拔差异对环境变异的影响。该研究旨在利用实验模型和基于现场研究数据的传统热带房屋的自然照明效果来评估建筑的热性能。印度尼西亚传统房屋之一爪哇议院是研究对象。该研究记录了爪哇传统建筑模型的阴影,与太阳辐射渗透和自然照明中断的关系。结果表明,低地和高地屋顶表面上的太阳辐射分布的差异不会影响着色分布。建筑过渡空间具有改变空气温度的能力,并从日光或辐射效果从阳光下减少眩光。两者都在低地和高地,较低的天空清晰度对房间自然照明的效果很大。此外,未脉冲和较高的照度区域接收更高的温度。

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