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Evaluation of thermal comfort using combined CFD and experimentation study in a test room equipped with a cooling ceiling

机译:在配备冷却天花板的测试室中使用CFD和实验研究相结合的方式评估热舒适性

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摘要

This paper reports a full-scale experimental campaign and a computational fluid dynamics (CFD) study of a radiant cooling ceiling installed in a test room, under controlled conditions. This research aims to use the results obtained from the two studies to analyze the indoor thermal comfort using the predicted mean vote (PMV). During the whole experimental tests the indoor humidity was kept at a level where the condensation risk was minimized and no condensation was detected on the chilled surface of the ceiling. Detailed experimental measurements on the air temperature distribution, surface temperature and globe temperature were realized for different cases where the cooling ceiling temperature varied from 16.9 to 18.9 ℃. The boundary conditions necessary for the CFD study were obtained from the experimental data measurements. The results of the simulations were first validated with the data from the experiments and then the air velocity fields were investigated. It was found that in the ankle/feet zone the air velocity could pass 0.2 m/s but for the rest of the zones it took values less than 0.1 m/s. The obtained experimental results for different chilled ceiling temperatures showed that with a cooling ceiling the vertical temperature gradient is less than 1 ℃/m, which corresponds to the standard recommendations. A comparison between globe temperature and the indoor air temperature showed a maximum difference of 0.8 ℃ being noticed. This paper also presents the radiosity method that was used to calculate the mean radiant temperature for different positions along different axes. The method was based on the calculation of the view factors and on the surface temperatures obtained from the experiments. PMV plots showed that the thermal comfort is achieved and is uniformly distributed within the test room.
机译:本文报告了在受控条件下安装在测试室中的辐射冷却顶棚的全面实验活动和计算流体力学(CFD)研究。本研究旨在利用从两项研究中获得的结果,使用预测的平均投票(PMV)分析室内的热舒适性。在整个实验测试中,室内湿度保持在使凝结风险最小化的水平,并且在天花板的冷表面上未检测到凝结。在不同的情况下,对冷却顶棚温度在16.9到18.9℃之间变化的情况,进行了有关空气温度分布,表面温度和地球温度的详细实验测量。 CFD研究所需的边界条件是从实验数据测量中获得的。首先用实验数据验证了模拟结果,然后研究了风速场。结果发现,在脚踝/脚区域,风速可以超过0.2 m / s,而其余区域的风速小于0.1 m / s。在不同的冷藏天花板温度下获得的实验结果表明,在带有冷却天花板的情况下,垂直温度梯度小于1℃/ m,符合标准建议。地球温度与室内空气温度之间的比较显示最大差异为0.8℃。本文还提出了辐射度方法,该方法用于计算沿不同轴的不同位置的平均辐射温度。该方法基于观察因子的计算以及从实验中获得的表面温度。 PMV图显示,达到了热舒适性,并且在测试室内均匀分布。

著录项

  • 来源
    《Building and Environment》 |2009年第8期|1740-1750|共11页
  • 作者单位

    CETHIL, Thermal Science Research Center of Lyon, UMR5008, CNRS, INSA-Lyon, 20 Avenue Albert Einstein, 69621 Villeurbanne Cedex, France;

    Universite Lyon 1, IUT A genie Civil, 43 Bd. Du 11 Novembre, 69622 Villeurbanne Cedex, France DGCB, URA CNRS 1652, ENTPE, rue Maurice Audin, 69518 Vaulx-en-Velin Cedex, France;

    CETHIL, Thermal Science Research Center of Lyon, UMR5008, CNRS, INSA-Lyon, 20 Avenue Albert Einstein, 69621 Villeurbanne Cedex, France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cooling ceiling; full-scale experimental study; CFD simulations; thermal comfort;

    机译:冷却天花板全面的实验研究;CFD模拟;热舒适;
  • 入库时间 2022-08-17 23:54:51

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