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首页> 外文期刊>Science and Technology for the Built Environment >Window and door opening behavior, carbon dioxide concentration, temperature, and energy use during the heating season in classrooms with different ventilation retrofitsASHRAE RP1624
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Window and door opening behavior, carbon dioxide concentration, temperature, and energy use during the heating season in classrooms with different ventilation retrofitsASHRAE RP1624

机译:窗口和门打开行为,二氧化碳浓度,温度和能量利用在加热季节,在教室中,具有不同的通风改造rp1624

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摘要

The aim of the present study was to extend the knowledge on the suitability and performance of different ventilation retrofit solutions for school buildings located in a temperate climate. A unique approach was used, where four similar and adjacent classrooms in the same school unit located north of Copenhagen, Denmark, were retrofitted either with a decentralized, balanced supply and exhaust mechanical ventilation unit with heat recovery; automatically operable windows with an exhaust fan; automatically operable windows with alternating counter-flow heat recovery through slots in the outside wall; or a visual feedback display unit showing the current classroom carbon dioxide concentration, thus advising when the windows should be opened. For comparison, one classroom retained the original approach for achieving ventilation by manual opening of windows. One year after retrofitting the classrooms carbon dioxide concentrations, temperatures, energy use, and window and door opening behavior were recorded during a four week period in the heating season in January. The measured carbon dioxide concentrations were significantly lower in the classrooms with the mechanical ventilation system and the system with automatic window opening and an exhaust fan as compared with the classrooms with automatic window opening and heat recovery, with visual carbon dioxide feedback and where windows were opened manually. The automatically controlled windows were open for 71% of the occupied time including breaks with an exhaust fan and for 49% with heat recovery. The facade windows were open up to 17% of the occupied time including breaks in the classrooms with manual window opening (with or without visual feedback). The classroom temperature was generally within the recommended thermal comfort range. The present results indicate that in temperate climates the mechanical ventilation system and both systems with automatic window opening are the recommended systems for classrooms in temperate climates. Providing simply visual feedback on the current carbon dioxide concentration, as a motivation for window opening, did not do so.
机译:本研究的目的是扩大关于在温带气候的学校建筑物的不同通风改造解决方案的适用性和性能的知识。使用了一种独特的方法,其中位于丹麦哥本哈根北部的同一所学校单位的四个相似和相邻的教室,并以分散的,平衡的供应和排气机械通风单元的热回收;使用排气扇自动可操作的窗户;自动可操作的窗户,通过外墙中的插槽交替进行交替的逆流热恢复;或者视觉反馈显示单元,显示当前的课堂二氧化碳浓度,从而建议窗户应打开。相比之下,一间教室保留了通过手动开口实现通风的原始方法。在1月份的加热季节在加热季节的四周内记录了一年后改造课堂二氧化碳浓度,温度,能量使用和窗口和门口行为。在课堂上具有机械通风系统和具有自动窗口开口和排气扇的系统的测量二氧化碳浓度显着较低,与具有自动窗口开口和热回收的教室相比,具有可视二氧化碳反馈和窗户打开的地方手动。自动控制窗口为71%的占用时间,包括带有排气扇的断裂,热量回收率为49%。门面窗口开放高达17%的占用时间,包括带有手动窗口的教室中的休息(有或没有视觉反馈)。教室温度通常在推荐的热舒适度范围内。本结果表明,温带气候,机械通风系统和两个带自动窗口开口的系统是温度气候中教室的推荐系统。只需对当前二氧化碳浓度的视觉反馈,作为窗口开口的动机,没有这样做。

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