首页> 外文会议>Energy and Environment Technology, 2009. ICEET '09 >Analysis of Energy Demand of Building Envelope Modification Schemes in Hot-Humid Areas
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Analysis of Energy Demand of Building Envelope Modification Schemes in Hot-Humid Areas

机译:湿热地区建筑围护结构改造方案的能源需求分析

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Since the Kyoto Protocol signed in December 1997, the majority of governments around the world have committed themselves to reducing the emission of the greenhouse gases. Thus, efficient use of energy and sustainability has become a key issue for the most energy policies. It is known that cooling energy demand of a building can play an important part in building total energy consumption. In addition, most cooling energy has been lost from building envelope. In hot-humid climate, heat insulation becomes a more important issue for its heat storage capacity of the envelope energy efficiency of the building. In this paper, building envelope modification schemes and the energy consumption simulation on a typical building model are constructed to show the importance of thermal mass in hot-humid areas, using TRNSYS, an energy consumption-simulation software. Eleven cases are examined throughout the simulation process and the basic condition of the building and ten other cases of energy efficient envelope design are studied. The results show that the energy saving effect of thermal insulation of walls is not remarkable in Hot Summer, Warm Winter Region; however, energy efficient window design seems the most effective method by improving the window material and shading devices so as to prevent the heat transfer from outdoor to indoor. The energy saving rate of window is up to 33.89%.
机译:自1997年12月签署《京都议定书》以来,世界上大多数政府已承诺减少温室气体的排放。因此,有效利用能源和可持续性已成为大多数能源政策的关键问题。众所周知,建筑物的冷却能量需求可以在建筑物的总能耗中发挥重要作用。另外,大多数冷却能量已经从建筑物围护结构中损失掉了。在炎热潮湿的气候中,绝热因其储热能力提高了建筑物围护结构的能效而成为一个更为重要的问题。在本文中,使用能耗模拟软件TRNSYS,构建了建筑围护结构修改方案并在典型建筑模型上进行了能耗模拟,以显示热湿地区热质量的重要性。在整个模拟过程中检查了11种情况,并研究了建筑物的基本状况,另外还研究了10种节能外壳设计的其他情况。结果表明,夏热冬暖地区墙体保温节能效果不明显。然而,节能的窗户设计似乎是通过改进窗户材料和遮阳装置以防止热量从室外传递到室内的最有效方法。窗的节能率高达33.89%。

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