Optimization of Chinese solar greenhouse building parameters based on CFD simulation and entropy weight method  

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作  者:Fen He Changqing Si Xiaoming Ding Zhenjun Gao Binbin Gong Fei Qi Yilei Yin Qian Feng 

机构地区:[1]Academy of Agricultural Planning and Engineering,Ministry of Agriculture and Rural Affairs,Beijing 100125,China [2]Key Laboratory of Farm Building in Structure and Intelligent Construction,Ministry of Agriculture and Rural Affairs,Beijing 100125,China [3]Shenzhen Envicool Technology Co.Ltd.,Shenzhen 518129,China [4]College of Mechanical&Power Engineering,China Three Gorges University,Yichang 443002,Hubei,China [5]Hebei Agricultural University,Baoding 071001,Hebei,China

出  处:《International Journal of Agricultural and Biological Engineering》2023年第6期48-55,共8页国际农业与生物工程学报(英文)

基  金:support provided by Hebei Province Key Research and Development Program (Grant No.22327214D);Independent Research and Development Plan of Academy of Agricultural Planning and Engineering,Ministry of Agriculture and Rural Affairs (Grant No.SP202101).

摘  要:The building parameters of Chinese solar greenhouse(CSG)directly affect the front roof lighting and indoor thermal environment.In order to obtain the optimal parameter combination,a building parameter optimization method based on computational fluid dynamics(CFD)simulation and entropy weight method was proposed.Firstly,a three-dimensional thermal and humidity environment model of CSG was constructed considering the coupling effect of soil,crop,and back wall based on CFD.The reliability of the model was validated through experiments in a CSG of Yongqing County,Hebei Province of China.Then,the indoor air temperature rise rate,air temperature and humidity uneven coefficient,and average air temperature and humidity were selected as the evaluation indicators of CSG thermal and humidity environment.The ridge height,back wall height and the horizontal projection of back roof of CSG were selected as the three factors of the orthogonal test plan,and a three-factor and four-level plan was designed,resulting in 16 different parameter combinations.By use of CFD simulation,the thermal and humidity environment evaluation indicators under different parameter combinations were calculated.The entropy weight method was used to assign weights to the evaluation indicators,and the comprehensive evaluation indicators of CSG thermal and humidity environment were obtained based on the linear weighting principle.By comparing comprehensive evaluation indicators,the optimal combination of building parameters was obtained with a ridge height of 5.72 m,a back wall height of 3.2 m,and a horizontal projection of 2.1 m on the back roof.The research results can provide a practical and feasible method for optimizing the building parameters of CSG,and provided theoretical guidance for the structural design and optimization of CSG.

关 键 词:CSG thermal and humidity environment CFD simulation entropy weight method building parameter optimization 

分 类 号:S625[农业科学—园艺学]

 

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