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Full Scale Measurements and CFD Simulations of Diffuse Ceiling Inlet for Ventilation and Cooling of Densely Occupied Rooms

机译:用于通风和冷却密集房间的扩散式天花板进口的全尺寸测量和CFD模拟

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摘要

Spaces with high occupant densities result in high heat gains and need for relatively high air change rate.By means of traditional mechanical ventilation diffusers it becomes a challenge to supply large amountsof fresh air into the space without creating a local discomfort for occupants. One solution to this problemis use of a diffuse ceiling inlet supplying a fresh air into the room through a large area of perforated ceiling.The aim of this paper was to report the research conducted on diffuse ceiling inlet installed in the fullscale test outdoor facility. The diffuse ceiling inlet based on gypsum boards with airtight connectionswas created utilizing the full potential of diffuse layer without undesirable crack flow reported by otherauthors. The measured values were used to validate the detailed Large Eddy Simulation model of testroom created in CFD software with aim to evaluate an indoor comfort numerically.Results of our investigations have shown that diffuse ceiling inlet is a suitable solution for the spaceswith high density occupancy. The results have shown that transient calculations using Large Eddy Simulation models can predict well temperatures and velocity magnitude of air flow in the room.
机译:具有高乘员密度的空间会产生较高的热量,并需要相对较高的换气率。通过传统的机械通风扩散器,向空间内供应大量新鲜空气而不给乘员带来局部不适成为一项挑战。解决此问题的一种方法是使用漫射天花板进气口,该进气口通过大面积的穿孔天花板向室内提供新鲜空气。本文的目的是报告对安装在全尺寸测试室外设施中的漫射天花板进气口进行的研究。利用具有不透气连接的石膏板的扩散天花板入口,利用了扩散层的全部潜能,而没有其他作者报告的不希望的裂纹流。测量值用于验证在CFD软件中创建的详细的大型涡流模拟测试室模型,目的是对室内舒适度进行数值评估。我们的研究结果表明,漫射天花板进气道是适合高密度空间的合适解决方案。结果表明,使用大涡模拟模型进行的瞬态计算可以预测房间中的井温度和气流速度大小。

著录项

  • 作者

    Mikeska Tomás; Fan Jianhua;

  • 作者单位
  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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