Analysis of the Indoor Thermal Environment and Passive Energy-Saving Optimization Design of Rural Dwellings in Zhalantun, Inner Mongolia, China

Zhalantun city is located in a severely cold region of China. The cold climate and long winter bring challenges to the energy-saving design of rural dwellings in this area, while the poor economic conditions restrict the application of energy-saving technology. This paper aims to propose an optimal...

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Main Authors: Teng Shao, Wuxing Zheng, Hong Jin
Format: Article
Language:English
Published: MDPI AG 2020-02-01
Series:Sustainability
Subjects:
Online Access:https://www.mdpi.com/2071-1050/12/3/1103
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spelling doaj-a3911b4247574206861d2242ff90067a2020-11-25T01:42:55ZengMDPI AGSustainability2071-10502020-02-01123110310.3390/su12031103su12031103Analysis of the Indoor Thermal Environment and Passive Energy-Saving Optimization Design of Rural Dwellings in Zhalantun, Inner Mongolia, ChinaTeng Shao0Wuxing Zheng1Hong Jin2School of Mechanics, Civil Engineering and Architecture, Northwestern Polytechnical University, Xi’an 710000, ChinaSchool of Mechanics, Civil Engineering and Architecture, Northwestern Polytechnical University, Xi’an 710000, ChinaSchool of Architecture, Harbin Institute of Technology, Harbin 150000, ChinaZhalantun city is located in a severely cold region of China. The cold climate and long winter bring challenges to the energy-saving design of rural dwellings in this area, while the poor economic conditions restrict the application of energy-saving technology. This paper aims to propose an optimal combination of passive design parameters by investigating, testing, and analyzing simulations of Zhalantun rural dwellings, which have a particular architectural pattern. Field measurements during winter show that the indoor temperature of a traditional house is low and fluctuates greatly, and the inner surface is prone to easy condensation. Through thermal comfort surveys, neutral and acceptable temperature ranges were obtained to provide indoor calculation parameters for an energy-saving design. Numerical simulations of heating energy consumption were conducted on the typical building models using DesignBuilder. The influence of different design factors on energy consumption was evaluated. Orthogonal experiments were designed to optimize a series of design parameter combinations to reduce the energy consumption of Zhalantun rural houses and to determine the sequence and significance of the effect of these design factors on energy consumption. Results show that the optimal parameter combination based on orthogonal experiments can obviously reduce energy consumption and have better economic benefits without considering mechanical methods. This can provide a basis for improved energy-saving designs and indoor thermal environments in such rural dwellings.https://www.mdpi.com/2071-1050/12/3/1103severe cold regionrural dwellingsenergy-saving designindoor thermal environmentorthogonal experiment
collection DOAJ
language English
format Article
sources DOAJ
author Teng Shao
Wuxing Zheng
Hong Jin
spellingShingle Teng Shao
Wuxing Zheng
Hong Jin
Analysis of the Indoor Thermal Environment and Passive Energy-Saving Optimization Design of Rural Dwellings in Zhalantun, Inner Mongolia, China
Sustainability
severe cold region
rural dwellings
energy-saving design
indoor thermal environment
orthogonal experiment
author_facet Teng Shao
Wuxing Zheng
Hong Jin
author_sort Teng Shao
title Analysis of the Indoor Thermal Environment and Passive Energy-Saving Optimization Design of Rural Dwellings in Zhalantun, Inner Mongolia, China
title_short Analysis of the Indoor Thermal Environment and Passive Energy-Saving Optimization Design of Rural Dwellings in Zhalantun, Inner Mongolia, China
title_full Analysis of the Indoor Thermal Environment and Passive Energy-Saving Optimization Design of Rural Dwellings in Zhalantun, Inner Mongolia, China
title_fullStr Analysis of the Indoor Thermal Environment and Passive Energy-Saving Optimization Design of Rural Dwellings in Zhalantun, Inner Mongolia, China
title_full_unstemmed Analysis of the Indoor Thermal Environment and Passive Energy-Saving Optimization Design of Rural Dwellings in Zhalantun, Inner Mongolia, China
title_sort analysis of the indoor thermal environment and passive energy-saving optimization design of rural dwellings in zhalantun, inner mongolia, china
publisher MDPI AG
series Sustainability
issn 2071-1050
publishDate 2020-02-01
description Zhalantun city is located in a severely cold region of China. The cold climate and long winter bring challenges to the energy-saving design of rural dwellings in this area, while the poor economic conditions restrict the application of energy-saving technology. This paper aims to propose an optimal combination of passive design parameters by investigating, testing, and analyzing simulations of Zhalantun rural dwellings, which have a particular architectural pattern. Field measurements during winter show that the indoor temperature of a traditional house is low and fluctuates greatly, and the inner surface is prone to easy condensation. Through thermal comfort surveys, neutral and acceptable temperature ranges were obtained to provide indoor calculation parameters for an energy-saving design. Numerical simulations of heating energy consumption were conducted on the typical building models using DesignBuilder. The influence of different design factors on energy consumption was evaluated. Orthogonal experiments were designed to optimize a series of design parameter combinations to reduce the energy consumption of Zhalantun rural houses and to determine the sequence and significance of the effect of these design factors on energy consumption. Results show that the optimal parameter combination based on orthogonal experiments can obviously reduce energy consumption and have better economic benefits without considering mechanical methods. This can provide a basis for improved energy-saving designs and indoor thermal environments in such rural dwellings.
topic severe cold region
rural dwellings
energy-saving design
indoor thermal environment
orthogonal experiment
url https://www.mdpi.com/2071-1050/12/3/1103
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AT wuxingzheng analysisoftheindoorthermalenvironmentandpassiveenergysavingoptimizationdesignofruraldwellingsinzhalantuninnermongoliachina
AT hongjin analysisoftheindoorthermalenvironmentandpassiveenergysavingoptimizationdesignofruraldwellingsinzhalantuninnermongoliachina
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