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Sensitivity of Building Zones to Potential Global Warming

机译:建筑区域对潜在全球变暖的敏感性

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As global warming entails new conditions for the built environment, the thermal and energy performance of existing buildings, which are designed based on current weather data, may become unclear and remain a great concern. Through building computer simulation and qualitative analysis of the weighted factor for the outdoor temperature impact on building energy and thermal performance, this paper investigates the sensitivity of different office building zoning to the potential global warming. A standard office building type is examined for all eight capital cities in Australia. Results show that comparing the middle and top floors, except for cool climate (i.e. Hobart), the ground floor appears to be the most sensitive to the effect of global warming and has the highest tendency for a overheating problem. From the analysis of the responses of different zone orientations to the outdoor air temperature increase, it is also found that there are widely varied responses between zone orientations, with South zone (in the southern hemisphere) being the most sensitive. With an increased external air temperature, the variation between different floors or zone orientations will become more significant, up to 53 percent increase of overheating hours in Darwin and 47 percent increase of cooling load in Hobart.
机译:由于全球变暖为建筑环境带来了新的条件,根据当前天气数据设计的现有建筑物的热能性能指标可能变得不清楚,仍然引起人们的极大关注。通过建筑计算机模拟和室外温度对建筑能量和热性能影响的加权因子的定性分析,本文研究了不同办公区域分区对潜在全球变暖的敏感性。对澳大利亚所有八个省会城市的标准办公大楼类型进行了检查。结果表明,将中层和顶层进行比较,除了凉爽的气候(即霍巴特)外,底层似乎对全球变暖的影响最为敏感,并且出现过热问题的可能性最高。通过分析不同区域取向对室外空气温度升高的响应,还发现区域取向之间的响应差异很大,其中南部区域(在南半球)最为敏感。随着外部空气温度的升高,不同楼层或区域方向之间的变化将变得更加明显,达尔文的过热时间增加了53%,霍巴特的冷却负荷增加了47%。

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