通过计算流体力学分析织物风管布置对人体舒适度造成的空气湿度分布

Kunthakorn Khaothong, Supakij Boonpaijit, Kanit Manatura, Kitipong Jaojaruek and Weerachai Chaiworapuek
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引用次数: 0

摘要

本研究探讨了风道和送风条件的物理特性对空调研究实验室中 60% 相对湿度湿度分布和人体舒适度的影响。研究采用计算流体动力学结合田口试验设计来分析数据。在送风方面,使用了 25 个织物风管。模拟结果显示了室内相对湿度分布的等距流动轨迹,以及湿度分布在 50% 至 55% RH 之间的泰国男性受试者的脚踝和颈部平面轮廓。通过关注脚踝和颈部平面,研究人员了解了如何优化湿度控制以提高舒适度和性能。
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Analysis of air humidity distribution caused by fabric air duct arrangement for human comforts by computational fluid dynamic
This research investigates the effects of the physical properties of air ducts and air supply conditions on 60% RH humidity distribution and human comfort in air-conditioned research laboratories. The study uses computational fluid dynamics in combination with the Taguchi experimental design to analyse the data. For the supply air, 25 fabric air ducts were used. The simulation results show the isometric flow trajectories of the relative humidity distribution in the room and the contours of the ankle and neck planes of a male Thai subject with a humidity distribution between 50% and 55% RH. By focusing on the ankle and neck plane, researchers understand how moisture control can be optimized to enhance comfort and performance.
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