Application of Bbox-Behnken design with response surface to optimize ventilation system in underground shelter

Ventilation shaft is one of the effective elements in natural venti- lation for ensuring acceptable Indoor Air Quality (IAQ) and thermal comfort. It has been found that the opening of ventilation shaft plays a significant role in the ventilation efficiency of an underground shelter. In this study, w...

全面介绍

Saved in:
书目详细资料
Main Authors: Mukhtar, Azfarizal, Yusoff, Mohd Zamri, Ng, Khai Ching, Mohamed Nasir, Mohamed Fariz
格式: Article
语言:English
出版: Penerbit Akademia Baru 2018
主题:
在线阅读:http://irep.iium.edu.my/72411/1/72411_Application%20of%20Box-Behnken%20Design.pdf
http://irep.iium.edu.my/72411/
http://www.akademiabaru.com/doc/ARFMTSV52_N2_P161_173.pdf
标签: 添加标签
没有标签, 成为第一个标记此记录!
实物特征
总结:Ventilation shaft is one of the effective elements in natural venti- lation for ensuring acceptable Indoor Air Quality (IAQ) and thermal comfort. It has been found that the opening of ventilation shaft plays a significant role in the ventilation efficiency of an underground shelter. In this study, we aim to develop a predictive ventilation rate model for a naturally-ventilated un- derground shelter. Computational Fluid Dynamics (CFD) was employed as a simulation tool, where the result was validated with experimental data ob- tained from the previous literature. Goal Driven Optimization (GDO) was used for the optimization process by considering three geometrical factors and their effects on the objective function. From this study, it is found that the predicted response surface values agree well with the CFD values and hence the predictive model is reliable.