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Sliding Modes Control for Heat Transfer in Geodesic Domes
Mathematics ( IF 2.4 ) Pub Date : 2020-06-03 , DOI: 10.3390/math8060902
Frank Florez , Pedro Fernández de Cordoba , John Taborda , Miguel Polo , Juan Carlos Castro-Palacio , María Jezabel Pérez-Quiles

The analysis and modeling of unconventional thermal zones is a first step for the inclusion of low-cost spaces and for the assessment of the environmental impact among areas of human use in warm climates. In this paper, the heat transfer in a geodesic dome located at the University of Magdalena (Colombia) is modeled and simulated. The simulator is calibrated against experimental measurements and used to study the effect of different loads which are regulated by a controller in sliding modes explicitly designed for this case. The closed-loop system is used together with ASHRAE Standard 55 to characterize comfort conditions within the dome and the effect on the overall thermal sensation with increasing the number of occupants.

中文翻译:

测地穹顶传热的滑模控制

非常规热区的分析和建模是包含低成本空间并评估温暖气候下人类使用地区之间的环境影响的第一步。在本文中,对位于马格达莱纳大学(哥伦比亚)的大地穹顶中的传热进行了建模和仿真。该模拟器针对实验测量进行了校准,并用于研究不同负载的影响,这些负载由控制器针对这种情况明确设计的滑动模式进行调节。闭环系统与ASHRAE标准55一起使用,以表征圆顶内的舒适条件以及随着乘员人数的增加而对整体热感产生的影响。
更新日期:2020-06-03
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