Impact of Dynamic Slab Insulation on Energy Performance of Residential Buildings

Roya Rajabi, Ammar H. A. Dehwah, M. Krarti
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Abstract

In this paper, the energy efficiency potential of applying novel dynamic insulation systems to slab foundations is investigated for residential buildings. Specifically, dynamic insulation allows the foundation to change its thermal resistance to reduce both heating and cooling thermal loads compared to static insulation systems. The energy benefits for the dynamic insulation are evaluated using a validated numerical model integrated in state-of-art whole-building simulation tool. Specifically, optimal settings for slab-integrated the dynamic insulation are determined monthly to reduce heating and cooling thermal loads while maintaining thermal comfort for a prototypical house located in representative US climates. The analysis results indicate that the deployment of slab integrated dynamic insulation can reduce heating and cooling energy end-uses by up to 12% (1267 kWh) especially for homes located in cold climates.
动态板保温对住宅建筑能源性能的影响
本文对住宅楼板基础采用新型动力保温系统的节能潜力进行了研究。具体来说,与静态保温系统相比,动态保温允许基础改变其热阻,以减少加热和冷却热负荷。动态保温的能源效益评估使用一个有效的数值模型集成在国家的最先进的整个建筑模拟工具。具体来说,每月确定板集成动态隔热的最佳设置,以减少加热和冷却热负荷,同时保持位于美国代表性气候的原型房屋的热舒适性。分析结果表明,平板集成动态保温的部署可以减少加热和冷却能源的最终使用量高达12%(1267千瓦时),特别是对于位于寒冷气候的家庭。
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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