Energy Consumption of Apartment Conversion into Passive Houses in Hot-Summer and Cold-Winter Regions of China

Author:

Li Yonghan,Yin WeiORCID,Zhong Yawen,Zhu Mingqiao,Hao XiaoliORCID,Li Yongcun,Ouyang Yuwen,Han Jie

Abstract

Passive houses have strong thermal insulation and airtightness of doors and windows, and they are generally used in cold climates. This case study aims to evaluate the energy-saving potential of this technology in the hot-summer and cold-winter areas (Cf in Köppen climate classification) of China. The results show that after enhancing the thermal insulation and airtightness, the energy consumption in winter significantly decreased by 62% overall. However, the energy consumption of cooling in the transition season and summer increased, which is caused by overheating. Hybrid ventilative cooling and shading can solve this problem. In particular, when the indoor temperature range is set to the adaptive thermal comfort of natural ventilation, the energy consumption from air conditioner cooling can be greatly reduced by 81% overall. Passive houses combined with ventilative cooling has significant application value in this climate zone.

Funder

National Natural Science Foundation of China

International Science and Technology Cooperation Program of China

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference41 articles.

1. Research Center of Tsinghua University for Building Energy Efficiency (2021). 2020 Annual Report on China Building Energy Efficiency, China Construction Industry Press. (In Chinese).

2. The Historical Evolution of the Energy Efficient Buildings;Ionescu;Renew. Sustain. Energy Rev.,2015

3. Passive Houses for Different Climate Zones;Schnieders;Energy Build.,2015

4. Verifying of the Feasibility and Energy Efficiency of the Largest Certified Passive House Office Building in China: A Three-Year Performance Monitoring Study;Han;J. Build. Eng.,2022

5. Identifying the Feasibility of Establishing a Passive House School in Central Europe: An Energy Performance and Carbon Emissions Monitoring Study in Germany;Wang;Renew. Sustain. Energy Rev.,2019

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