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首页> 外文期刊>Indoor and built environment >Objective investigation of discomfort due to draught in a tangential air distribution system: Influence of air diffuser's offset ratio
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Objective investigation of discomfort due to draught in a tangential air distribution system: Influence of air diffuser's offset ratio

机译:切向空气分配系统中由于通风引起的不适感的客观调查:空气扩散器偏移率的影响

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The purpose of this paper is to investigate the influence of air diffuser's offset ratio on air velocity and turbulence intensity distribution. Air velocity, turbulence intensity and air temperature measurements were performed in a single office full-scale room in isothermal case. Then the draught rate numbers were calculated to evaluate the discomfort due to draught using Fanger's model. Different statistical tests were applied to evaluate the measured data. Results showed that the average of air velocity magnitude, turbulence intensity and draught rate was independent of the inlet offset ratio at ankle height. At the knee height and head height of seated and standing person, there was a polynomial connection between the average values and the inlet offset ratio. International standards recommend an average turbulence intensity of 40% to calculate draught rate. The results showed that 70%-80% of measured turbulence intensities were less than the standard value in the investigated range of inlet offset ratio. The draught at ankle height was within category C, while at knee height and head height of seated and standing person, the averaged draught rate numbers meet the category A and B and recommendation of CR 1752. Our results could help designers to calculate the average value of air velocity and turbulence intensity for room air distribution and indoor air comfort design.
机译:本文的目的是研究空气扩散器的偏移比对风速和湍流强度分布的影响。在等温情况下,在单个办公室满刻度房间中进行风速,湍流强度和气温测量。然后使用Fanger模型计算吃水率数字,以评估吃水引起的不适感。应用了不同的统计检验来评估测量数据。结果表明,风速,湍流强度和气流速率的平均值与脚踝高度处的进气失调比无关。在就座者和站立者的膝盖高度和头部高度处,平均值与入口偏移率之间存在多项式关系。国际标准建议使用40%的平均湍流强度来计算吃水率。结果表明,在研究的进气失调比范围内,测得的湍流强度的70%-80%小于标准值。脚踝高度处的吃水深度在C类之内,而就座者和站立者的膝盖高度和头部高度处的吃水深度,其平均吃水率数字符合A类和B类以及CR 1752的建议。我们的结果可帮助设计师计算平均值空气流速和湍流强度,用于室内空气分配和室内空气舒适度设计。

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