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Evaluation of cooling ceiling and mechanical ventilation systems on thermal comfort using CFD study in an office for subtropical region

机译:使用CFD研究在亚热带地区的办公室评估冷却天花板和机械通风系统的热舒适性

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摘要

Radiant cooling ceiling systems have already been proven to potentially provide an improved thermal comfort environment. This work conducted a full-scale experiment in an office, and a computational fluid dynamics (CFD) simulation study for a radiant cooling ceiling system integrated with air dehu-midiflcation equipment installed in this test space. The obtained results from the experiment were compared with the values from the CFD simulation to validate the accuracy of the model. Predicted mean vote (PMV) index was used to assess the original indoor thermal condition and improved conditions according to the simulation results. Experimental variables included supply air temperature from the diffuser, surface temperature, and the area of the cooling panels. In addition, diffuser position in the mechanical ventilation system was analyzed that provided suggestions on improving the design of radiant cooling ceiling panels. This study proposed solutions alongside limitations on improving indoor thermal comfort and energy efficiency using a radiant cooling ceiling system in the subtropical regions of Taiwan.
机译:辐射冷却天花板系统已经被证明可以潜在地提供改善的热舒适环境。这项工作在办公室进行了全面的实验,并针对安装在该测试空间中的集成了空气除气-硝化​​设备的辐射冷却顶棚系统进行了流体动力学(CFD)仿真研究。将实验获得的结果与CFD仿真得到的值进行比较,以验证模型的准确性。预测平均投票(PMV)指数用于根据模拟结果评估原始室内热状况和改善的状况。实验变量包括来自扩散器的送风温度,表面温度和冷却板的面积。此外,分析了机械通风系统中扩散器的位置,为改进辐射冷却顶板的设计提供了建议。这项研究提出了解决方案,同时限制了台湾亚热带地区使用辐射冷却天花板系统提高室内热舒适性和能源效率的局限性。

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