Thermal Performance Optimization of Building Envelopes in a Low-Cost and Energy-Saving Rural Dwelling in Severe Cold Region—Taking Central Area of Liaoning as an Example

Author:

Zhang Xueyan1,Zhang Xingkuo1,Chen Bin1,Zhao Joe R.2ORCID,Sun Jiaojiao2,Zhao Jiayi1,Wei Bingyang1,Zhu Jiayin23ORCID

Affiliation:

1. School of Civil Engineering, Dalian University of Technology, Dalian 116024, China

2. Tri-Y Environmental Research Institute, 2655 Lillooet St., Vancouver, BC V5M 4P7, Canada

3. School of Hydraulic and Civil Engineering, Zhengzhou University, Zhengzhou 450000, China

Abstract

The thermal performance of rural building envelopes is mostly non-standardized in Northern China, resulting in significant heat loss. In this study, we take, as an example, the central area of Liaoning province, with the objective of proposing some low-cost and energy-efficient solutions. Through our investigations, we found that heating energy consumption was reduced by 20% and construction costs increased by less than CNY 8000 (USD 1108), which can be accepted by rural residents. In order to achieve this target, the NSGA-II algorithm integrated with Rhino + Grasshopper and EnergyPlus simulation kernel was used to establish a thermal performance optimization model for the heat transfer of rural building envelopes in this severe cold region. Among the above-calculated Pareto optimal solutions, the recommended thickness of insulation layers for room floors, roofs, and external walls was about 70 mm, 50 mm, and 40 mm, respectively. Furthermore, we tried to reduce the window-to-wall ratio as much as possible. Finally, based on both the lower building renovation cost and energy-saving rate, three technical solutions from which rural residents could select, according to their specific needs, are put forward.

Funder

National Nature Science Foundation of China

National Key Point Research and Invention Program of the Thirteenth

Publisher

MDPI AG

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