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Air Infiltration through Revolving Doors.

机译:通过旋转门的空气渗透。

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摘要

For large public buildings, conventional swing or sliding doors provide openings on the ground floor causing significant amount of energy losses through doorway. The configuration of revolving doors keeps the entrance closed at all times while allowing large number of people to pass through. Therefore, revolving doors are widely used as a solution to reduce the undesired air infiltration caused by the entrance and minimize the energy needs for heating and cooling.;Correlation-based models of the volumetric air flow rate expressed by the rotation speed and dimensionless temperature indexes around the door were obtained at different seal conditions. The models established on the base of the experimental data provide an easy in prototype. The energy loss due to the rotation of door, based on the new experiments, was also compared with those based on previous data.;A 1/10 reduced-scale model was designed for the laboratory measurements of the air infiltration caused by the movement of revolving doors. The revolving door was installed on a well-insulated airtight box, placed in a climatic chamber in which the winter outdoor conditions were controlled. A heater was installed inside the box to maintain the indoor environment at a constant temperature. Experiments were performed at different rotation speeds of the revolving door. The air infiltration rates due to the door rotation at different indoor-outdoor temperature differences were calculated based on the energy balance equation of the air inside the box. The experimental results were compared with those from very limited previous studies.
机译:对于大型公共建筑,常规的平开门或滑动门在地面上提供了开口,从而导致大量能量通过门口损失。旋转门的配置使入口始终保持关闭状态,同时允许大量人通过。因此,旋转门被广泛用作一种解决方案,以减少入口引起的不希望的空气渗透,并最大限度地减少加热和冷却所需的能量。;基于相关性的风量模型,由转速和无量纲温度指数表示在不同的密封条件下获得门的周围。基于实验数据建立的模型提供了简单的原型。在新的实验基础上,还将门旋转引起的能量损失与以前的数据进行了比较。实验室设计了一个1/10的缩小比例模型,用于测量由空气的运动引起的空气渗透。旋转门。旋转门安装在一个隔热良好的密闭盒中,该密闭盒放置在一个控制冬季室外条件的气候室内。盒子内装有加热器,以保持室内环境恒定温度。在旋转门的不同旋转速度下进行了实验。根据箱体内空气的能量平衡方程,计算了在不同室内外温差下门旋转导致的空气渗透率。将实验结果与以前非常有限的研究结果进行了比较。

著录项

  • 作者

    Du, Lin.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Civil engineering.;Architectural engineering.
  • 学位 M.A.Sc.
  • 年度 2009
  • 页码 110 p.
  • 总页数 110
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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