首页> 外文期刊>Building and Environment >Verification of a simplified method for intelligent glazed facade design under different control strategies in a full-scale facade test facility -Preliminary results of a south facing single zone experiment for a limited summer period
【24h】

Verification of a simplified method for intelligent glazed facade design under different control strategies in a full-scale facade test facility -Preliminary results of a south facing single zone experiment for a limited summer period

机译:在大型立面测试设施中采用不同控制策略的智能玻璃立面设计的简化方法的验证-夏季有限的朝南单区实验的初步结果

获取原文
获取原文并翻译 | 示例
           

摘要

The research aims to verify a simplified calculation method for intelligent glazed facade under different control strategies (night shutter, solar shading and natural ventilation). The method is developed to simulate the energy performance and indoor environment of an office room installed with intelligent facades. The calculation results of heating and cooling needs are verified by experimental data collected in a full-scale test facility (Cube) with south-facing facade at Aalborg University (DK) during summer period from 18th to 22nd June 2014. According to the results of the comparison, the calculated air temperature has good agreements with the measurements, with the R~2 value of 0.8. Additionally, the total cooling energy consumptions measured in the experiment are 30% lower than the calculated. The experiment was conducted in the test facility with only south-facing facade and during a short summer period, which limits the verification of the method. When using water system in the chilled beam to cool down test room, it needs to be noticed that the forward water temperature should be controlled not to be higher than the air temperature of the test room when there is no cooling need in the test room; otherwise the chilled beam will release heating to the test room, which could influence the accuracy of the result. National Instrument (NI) CompactRIO is used to acquire measured data from different sensors and send signal to control building services like ventilation, heating, cooling and artificial lighting. The whole process is realized with the help of Labview.
机译:该研究旨在验证在不同控制策略(夜幕,遮阳和自然通风)下智能玻璃幕墙的简化计算方法。开发该方法是为了模拟安装有智能外墙的办公室的能源性能和室内环境。 2014年6月18日至22日夏季,通过奥尔堡大学(DK)面向南立面的大型测试设施(Cube)收集的实验数据验证了供热和制冷需求的计算结果。通过比较,计算出的气温与实测值吻合良好,R〜2值为0.8。此外,实验中测得的总冷却能耗比计算值低30%。该实验是在只有朝南立面的测试设施中进行的,并且在夏季短时间内进行,这限制了该方法的验证。当在冷梁中使用水系统来冷却测试室时,需要注意的是,当测试室中不需要冷却时,应将正向水温控制在不高于测试室的空气温度的水平;否则冷梁将热量释放到测试室,这可能会影响结果的准确性。 National Instruments(NI)CompactRIO用于从不同的传感器获取测量数据,并发送信号以控制建筑物的服务,例如通风,供暖,冷却和人工照明。整个过程是在Labview的帮助下实现的。

著录项

相似文献

  • 外文文献
  • 中文文献
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