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Design of Practical Hybrid Ventilation Building in Central Tokyo

机译:东京市中心实用的混合通风建筑设计

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Hybrid ventilation systems have been previously shown to reduce cooling and ventilation energy consumption, however they often require large atria and do not sufficiently attenuate ambient noise, especially in urban areas. This paper presents a case study of a new ten story 83,700 ft~2 (7,780 m~2) office building in downtown Tokyo with a hybrid ventilation system that uses only 1.7% of the building footprint for ventilation shafts.A special design approach is used to predict the hybrid ventilation potential of this building. As a first step, an airflow network model tool developed at MIT is used to predict the overall building conditions (temperature and airflow rate) inside the building when using pure and fan-assisted natural ventilation on a monthly basis. As a second step, Computational Fluid Dynamics (CFD) simulations are used to investigate airflow and temperature distributions in the open-plan office space and inform the design of exhaust airflow conditions. The building is currently under construction.Pure natural ventilation is predicted to provide comfortable conditions within the space, according to ASHRAE Standard 55, for 727 of a possible 1400 working hours between April and October in Tokyo. That time can be extended to 1018 hours if low-power fans that operate with less than 6% of the energy required for mechanical cooling are used to leverage the low airflow resistance of the building. CFD simulations indicate that the inlet angle of the incoming air into the room has a significant effect on the temperature distribution in the space.
机译:混合通风系统先前已显示出可减少冷却和通风能量的消耗,但是,它们通常需要较大的心房并且不能充分衰减环境噪声,尤其是在城市地区。本文以东京市中心一栋新的10层楼高83,700 ft〜2(7,780 m〜2)的办公楼为例,该办公楼采用了混合通风系统,仅占通风井道建筑面积的1.7%,采用一种特殊的设计方法预测该建筑物的混合通风潜力。第一步,由麻省理工学院开发的气流网络模型工具,用于在每月使用纯风扇辅助自然通风的情况下,预测建筑物内部的总体建筑物状况(温度和气流速率)。第二步,使用计算流体动力学(CFD)模拟来研究开放式办公空间中的气流和温度分布,并为设计排气条件提供依据。该建筑物目前正在建造中。根据ASHRAE标准55,预计纯自然通风将为空间提供舒适的条件,在东京(4月至10月)可能的1400个工作小时中,有727个工作小时。如果使用功率不足机械冷却所需功率的6%的低功率风扇来利用建筑物的低气流阻力,则该时间可以延长到1018小时。 CFD仿真表明,进入房间的空气进入角度对空间中的温度分布有很大影响。

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