Fang Hui, Li Wen-Ke, Dai Peng
Civil Engineering and Architecture, Shandong University of Science and Technology, Qingdao, 266590, China.
Sci Rep. 2025 Jul 2;15(1):23407. doi: 10.1038/s41598-025-07421-8.
With the proposed goals of "energy conservation, carbon reduction, and green development," green and low-carbon lifestyles have gained significant attention. As a major sector of energy consumption, residential buildings face common issues such as high energy consumption, poor comfort, and aging facilities. Taking a residential building in the West Coast New Area of Qingdao, Shandong Province as a case study, this research employs field surveys and DesignBuilder software simulations to analyze the performance of building envelopes and interior walls in non-heated spaces. The thermal insulation performance differences are compared across three stages: the original building, preliminary retrofit, and passive ultra-low energy stage. On this basis, a parametric analysis of the thermal performance of passive ultra-low energy building envelope components was conducted. The results demonstrate that passive ultra-low energy retrofitting of the building envelope can achieve an energy-saving rate of up to 87.06% compared to the original building, and 84.9% compared to the preliminary retrofit. This research, focusing on the parametric analysis of passive ultra-low energy envelope performance in existing residential buildings, provides a theoretical foundation for energy conservation and carbon reduction in existing residential buildings.
在“节能、减碳、绿色发展”的既定目标下,绿色低碳生活方式受到了广泛关注。作为能源消耗的主要领域,住宅建筑面临着能耗高、舒适度差、设施老化等常见问题。本研究以山东省青岛市西海岸新区的一栋住宅建筑为例,采用实地调查和DesignBuilder软件模拟的方法,分析非供暖空间中建筑围护结构和内墙的性能。比较了原建筑、初步改造和被动式超低能耗三个阶段的保温性能差异。在此基础上,对被动式超低能耗建筑围护结构部件的热性能进行了参数分析。结果表明,建筑围护结构的被动式超低能耗改造与原建筑相比,节能率可达87.06%,与初步改造相比,节能率可达84.9%。本研究聚焦于既有住宅建筑被动式超低能耗围护结构性能的参数分析,为既有住宅建筑的节能减碳提供了理论依据。