首页> 外文会议>International Conference on Tall Buildings >SAMPLING POINT DENSITIES FOR ASSESSING INDOOR AIR QUALITY
【24h】

SAMPLING POINT DENSITIES FOR ASSESSING INDOOR AIR QUALITY

机译:用于评估室内空气质量的采样点密度

获取原文

摘要

Maintaining acceptable indoor air quality (IAQ) has become a public issue, policymakers have had developed strategies to address the performance of it. Pollutant concentration measured during the occupied period of a space is a key parameter to determine IAQ. Apart from a number of sampling schemes concerning the measurement time of the average pollutant level, an 8-hour continuous measurement has been widely adopted in local IAQ assessments, with a balance of accuracy and measurement effort. It is believed that the longer the measurement time, the higher the accuracy and confidence level of the measurement can be achieved. However, the probable errors of the measurement, regarding the number of measurement points, were not addressed clearly in those assessments. This study, taking a long-term carbon dioxide measurement in a typical open-plan office building as a reference, develops a database to examine the probable errors of the measurement at different sampling point densities. The results showed that there was a strong correlation between the sampling point density and the probability of obtaining the measured quantity at certain confidence levels. Moreover, the confidence level in determining the indoor air quality in the occupied period for a ventilated space could be increased from 70% to 90% at a 5% error set limit when the sampling points were doubled to the one recommended in the HKEPD certification scheme.
机译:保持可接受的室内空气质量(IAQ)已成为一个公共问题,政策制定者已经制定了解决其表现的策略。在空间的占用期间测量的污染物浓度是确定IAQ的关键参数。除了有关平均污染水平的测量时间的许多采样方案之外,在本地IAQ评估中已广泛采用8小时的连续测量,具有准确性和测量工作的平衡。据信,测量时间越长,测量的准确度和置信水平越高。然而,关于测量点数的测量值的可能误差在这些评估中没有清楚地解决。这项研究,采取了长期的二氧化碳测量在一个典型的开放式办公建筑为参考,开发了一个数据库,以不同的采样点的密度来检查测量的可能错误。结果表明,采样点密度与在某些置信水平下获得测量量的概率之间存在强烈的相关性。此外,当采样点加倍的5%误差设定限制,确定通风空间占用时期的室内空气质量的置位水平在5%误差设定限值下降到HKEPD认证方案中推荐的一个推荐时,可以从70%到90%增加到50%至90% 。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号