...
首页> 外文期刊>Clean Technologies >Comparative Study of a Clean Technology Based on DSF Use in Occupied Buildings for Improving Comfort in Winter
【24h】

Comparative Study of a Clean Technology Based on DSF Use in Occupied Buildings for Improving Comfort in Winter

机译:基于DSF在占用建筑物中的清洁技术对冬季舒适性的清洁技术比较研究

获取原文

摘要

This paper presents a comparative study of a clean technology based on a DSF (double skin facade) used in winter conditions in the occupied buildings comfort improvement, namely the thermal comfort and air quality. The performance of a solar DSF system, the building’s thermal response, the internal thermal comfort and the internal air quality are evaluated. In this study, a DSF system, an air transport system and a HVAC (heating, ventilating and air conditioning) system based on mixing ventilation are used. The study considers a virtual chamber occupied by eight persons and equipped, in the outside environment, by three DSFs. A new horary pre-programming control methodology is developed and applied when the airflow rate is constant and the number of DSFs to operate is variable, when the airflow rate is variable and the number of DSFs to operate is constant and when the airflow rate is variable and the number of DSFs to operate is variable. This work uses a numerical model that simulates the integral building thermal behavior and an integral human thermal response. The internal air, provided by a mixing ventilating system, is warmed using the DSF system. The air temperature inside the DSF system and the virtual chamber, the thermal comfort level using the PMV index, the internal air quality using the carbon dioxide concentration and the uncomfortable hours are calculated for winter conditions. The results obtained show that the energy produced in the DSF, using solar radiation, guarantees acceptable thermal comfort conditions in the morning and in the afternoon. The indoor air quality obtained at the breathing level is acceptable. It is found that the airflow rate to be used is more decisive than the DSF operating methodology. However, when a solution is chosen that combines a ventilation rate with the number of DSF to operate, both variables throughout the day can obtain simultaneously better results for indoor air quality and thermal comfort according to the standards.
机译:本文介绍了基于冬季条件下的DSF(双皮外观)的清洁技术的比较研究舒适改进,即热舒适和空气质量。 Solar DSF系统的性能,建筑的热响应,内部热舒适度和内部空气质量进行了评估。在该研究中,使用基于混合通风的DSF系统,空气输送系统和HVAC(加热,通风和空调)系统。该研究考虑了一个虚拟分庭,在外面的环境中,在外部环境中被三个DSF占据。开发和应用新的Horryare预编程控制方法,当气流率是恒定的并且当气流速率变化时,DSF的数量是可变的,并且操作的DSF的数量是恒定的,并且当气流率变化时和操作的DSF的数量是可变的。这项工作采用了一种数值模型,用于模拟积分构建的热行为和整体的人体热响应。由混合通风系统提供的内部空气使用DSF系统加热。 DSF系统内的空气温度和虚拟室,使用PMV指数的热舒适度,使用二氧化碳浓度的内部空气质量和冬季条件计算不舒服。得到的结果表明,使用太阳辐射,DSF中产生的能量,可在清晨和下午保证可接受的热舒适条件。在呼吸水平获得的室内空气质量是可以接受的。发现要使用的气流率比DSF操作方法更具决定性。 However, when a solution is chosen that combines a ventilation rate with the number of DSF to operate, both variables throughout the day can obtain simultaneously better results for indoor air quality and thermal comfort according to the standards.

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