...
首页> 外文期刊>ASHRAE Transactions >Temporal Analysis of Wind Data for Wind-Driven Ventilation Assessment
【24h】

Temporal Analysis of Wind Data for Wind-Driven Ventilation Assessment

机译:风数据的时态分析,以进行风驱动通风评估

获取原文
获取原文并翻译 | 示例

摘要

Time-varying ventilation is emphasized in the in recently published ASHRAE Standard 62.2 2016 and "Equivalent Ventilation" method has been proposed as a guideline for variable ventilation design. Potentially, this method could be used to evaluate the effectiveness of unsteady wind induced airflow and thus better integrate it in the ventilation design. However, to implement wind forced natural ventilation as a variable ventilation strategy, the knowledge and understanding of temporal variation of both wind direction and speed is essential. As a preliminary investigation, the periodic and cyclical behavior of wind speed is observed by applying the Fast Fourier Transform to one-minute wind data of New York and Austin. The wind speed exhibits annual and diurnal cycles and other cyclical behaviors in both cities, based on which, "seasons" are defined. Moreover, for relatively high wind speed, wind direction seems less variable. The magnitude of wind direction changes during small time periods are examined to determine the appropriate length of the averaging period for wind speed. The one-hour averages are proved to be sufficient for these two wind datasets and the reason is twofold: first, the majority of wind direction variations (more than 60%) is less than 15 degrees (arbitrarily considered as sufficiently small) at this time interval; second, when the one-hour averages is observed for 24-hour, the significant cyclic behaviors of daily wind speed are preserved. The airflow rate estimated by one-hour averaging wind speed and mode of wind direction using orifice equation agree with those computed by original one-minute wind data, therefore, wind data at one-hour resolution has the potential to capture the variation of wind speed.
机译:在最新发布的ASHRAE标准62.2 2016中强调了时变通风,并且已提出“等效通风”方法作为可变通风设计的准则。潜在地,该方法可用于评估非稳态风诱导气流的有效性,从而更好地将其集成到通风设计中。但是,要将强制自然通风作为可变通风策略来实施,必须了解和理解风向和风速的时间变化。作为初步研究,通过将快速傅立叶变换应用于纽约和奥斯丁的一分钟风速数据,观察到风速的周期性和周期性行为。在这两个城市中,风速表现出年度和昼夜周期以及其他周期性行为,基于此定义了“季节”。此外,对于相对较高的风速,风向似乎变化较小。检查小时间段内风向变化的大小,以确定风速平均周期的合适长度。事实证明,这两个风数据集的一小时平均值足够了,原因是双重的:首先,此时大多数风向变化(大于60%)小于15度(任意认为足够小)间隔;第二,当观察24小时的一小时平均值时,每日风速的重要循环行为得以保留。使用节流孔方程通过一小时平均风速和风向模式估算的风速与原始一分钟风速数据计算的风速一致,因此,一小时分辨率的风速数据有可能捕获风速的变化。

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