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Numerical Simulation of Indoor Thermal Environment Effected by Air Supply Temperature and Grille Angle on Stratum Ventilation in A Typical Office

机译:送风温度和格栅角度对典型办公室地层通风影响室内热环境的数值模拟

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摘要

Based on for indoor thermal environment and human thermal comfort,the air distribution in a typical air-conditioned office in the mode of stratum ventilation was simulated with the Fluent Airpak simulation software in this paper.The variation regularity of indoor thermal environment effected on air supply temperature and grille angle was explored and human thermal comfort and energy efficiency was analyzed.The following conclusions could be obtained.Under this condition with air supply angle and other parameters unchanging,air conditioning room temperature appeared overall upward trend with the air temperature increased; The average indoor wind speed appeared overall upward trend; the average indoor predicted percentage of dissatisfaction PPD decreased firstly and then increased.When the air temperature was 20℃,PPD achieved the minimum value.When the air supply temperature and other parameters were unchanging,the average value of PPD was increased firstly and then decreased with the air supply angle changing.When the air supply angle was 90 degrees,PPD achieved the maximum value.
机译:基于室内热环境和人的热舒适性,本文使用Fluent Airpak模拟软件对典型空调办公室中地层通风模式下的空气分布进行了模拟。室内热环境对供气的变化规律得出以下结论:在此条件下,送风角度及其他参数不变,空调室温随着空气温度的升高而呈现整体上升的趋势。室内平均风速总体呈上升趋势。室内平均不满意PPD的预测百分比先降低然后升高。当气温为20℃时,PPD达到最小值。当送风温度和其他参数不变时,PPD的平均值先升高然后降低当送风角度为90度时,PPD达到最大值。

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