Multi-Objective Optimization of Envelope Design of Rural Tourism Buildings in Southeastern Coastal Areas of China Based on NSGA-II Algorithm and Entropy-Based TOPSIS Method

Author:

Wang Meiyan1,Chen Chen12ORCID,Fan Bingxin1,Yin Zilu1,Li Wenxuan1,Wang Huifang2,Chi Fang’ai1

Affiliation:

1. College of Landscape Architecture, Zhejiang A&F University, Hangzhou 311300, China

2. Graduate School of Environment Engineering, The University of Kitakyushu, Kitakyushu 808-0135, Japan

Abstract

The rapid development of rural tourism and higher requirements for the indoor environments of rural tourism buildings (RTBs) have led to rapid growth in the energy consumption of RTBs. The aim of this work was to apply a new method to optimize the indoor thermal environments and energy performances of RTBs and promote scientific passive design strategies for RTBs in southeastern coastal areas of China. First, a field survey was carried out to understand the statuses of buildings and the energy consumption of RTBs. Through a building typology analysis, two types of RTBs (renovated from existing buildings and newly built) were chosen as the dominant types in the villages. Second, a comprehensive parametric study was conducted to examine the impact of energy consumption and the indoor thermal environment using a global sensitivity analysis. The passive design parameters with large sensitivity impacts were selected using the Sobol sampling method and by calculating the comprehensive contribution rates of the parameters. Then, the NSGA-II algorithm was used to simultaneously minimize the two objectives and generate the Pareto front solution sets of the two RTB types. Finally, by applying an entropy-based TOPSIS decision-making method, the optimal schemes (the best energy-saving solution, the best comfort solution, and the best compromise solution) for the two RTB types were further obtained from the feasible Pareto-optimal solutions, and the suggested values for the design parameters are presented. This study proposes a new multi-objective optimization approach combining the NSGA-II algorithm and an entropy-based TOPSIS decision-making method, and the findings are valuable, as they can help designers to improve the designs of rural tourism buildings.

Funder

Zhejiang Provincial Natural Science Foundation of China

Zhejiang Province Soft Science Research Project

Zhejiang Provincial Philosophy and Social Sciences Planning Project

Zhejiang A&F University

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference71 articles.

1. Rurality and rural tourism development in China;Shen;Tour. Manag. Perspect.,2019

2. Wang, J., and Wu, Z. (2022). Annual Report on the Development of Rural Tourism in China (2022), Social Sciences Academic Press.

3. National Development and Reform Commission, and Ministry of Culture and Tourism China (2023, April 10). Notice on Publishing the List of the First, Second and Third Batch of National Rural Tourism Key Villages 2019, 2021, 2022, Available online: http://www.gov.cn/zhengce/zhengceku/2021-09/02/content_5634883.htm.

4. Culture and Tourism Market Development (2023, April 10). Guidance on the promotion of high-quality development of rural B&B, Available online: http://www.gov.cn/zhengce/zhengceku/2022-07/19/content_5701748.htm.

5. Peng, S., and Jiang, Y. (2015). Roadmap for China’s Building Energy Conservation, China Construction Industry Press.

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