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The Influence of Ventilation Design Mixes on the Thermal Environment in Elementary School Classrooms

机译:通风设计混合对小学教室热环境的影响

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摘要

The roofs of most of the buildings in Taiwan are exposed to direct (overhead) solar radiation during the summer season because it is located near the Tropic of Cancer. The estimated yearly solar heat gain received from a roof is 2.78 times greater than that gained from a south-side wall (the second highest in terms of solar heat gain). Since most elementary schools in Taiwan are not equipped with air conditioners, the classrooms, especially those located on the upper floors, are regularly overheated. Solving the problem of ventilation and improving the thermal environment in Taiwan elementary school classrooms is an important endeavor. CFD simulations were conducted to investigate six combinations of designs that can incorporate natural ventilation (double roofs, "Covered Ridge with Sidewall Opening" (CRSOs), roof ridge openings, and window layout) influence indoor thermal environments,rnespecially during the summer season when the outdoor wind velocity is low. The results show that when a double roof, roof ridge openings, and a CRSO are implemented, both the ventilation performance and the thermal environment of the classrooms are improved, regardless of whether the windows are laid out in a staggered formation (high-low) or in a conventional window layout.
机译:台湾大部分建筑物的屋顶在夏季都暴露在直接(高架)太阳辐射下,因为它位于北回归线附近。估计每年从屋顶获得的太阳热量增加量比从南侧墙获得的热量增加2.78倍(就太阳热量获得量而言第二高)。由于台湾大多数小学都没有配备空调,因此教室(尤其是位于较高楼层的教室)经常过热。解决台湾小学教室的通风问题并改善热环境是一项重要的工作。进行CFD模拟以研究可结合自然通风的六种设计组合(双屋顶,“带侧墙开口的屋脊”(CRSO),屋脊开口和窗户布局)影响室内热环境,特别是在夏季室外风速低。结果表明,采用双层屋顶,屋脊开口和CRSO时,无论窗户是否以交错的形式布置(高低),教室的通风性能和热环境均得到改善。或采用传统的窗口布局。

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