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Numerical simulation of the effects of hanging sound absorbers on TABS cooling performance

机译:悬挂吸声器对TaBs冷却性能影响的数值模拟

摘要

Recently there has been a considerable increase in the use of Thermally-ActiveBuilding Systems (TABS) in Europe as an energy-efficient and economical coolingand heating solution for buildings. However, this widespread solution requires large uncovered hard surfaces indoors, which can lead to a degradation of the room acoustic comfort. Therefore, challenges arise when this system has to be combined with acoustic requirements.Soffit-hanging sound absorbers embody a promising solution. This study focuses on quantifying their impact on the cooling performance of TABS, assessed by means of the cooling capacity coefficient of the ceiling deck. The influence of different ceiling coverage ratios (0-30-45-60 and 80%) as well as the influence of the distance at which the absorbers are placed is studied by numerical simulations using a new, specially-developed TRNSYS Type. Tests were performed in a test room simulating a two-person office of 20 m2, with a typical cooling load of 42 W/m2. The results show that covering 60% of the ceiling surface with sound absorbershanging at 300 mm from the ceiling active deck is expected to reduce the coolingcapacity coefficient of TABS by 15.8%. This drops to 25.4% with a coverage of 80%. The presence of acoustic panels also affects the thermal comfort: the operative temperature in the room increases by 0.9°C in the former case and up to 1.6°C in the latter. Results also show that comfort ventilation supplied to the enclosure has a considerable influence on the thermal conditions in the room; if the ventilation is removed, then the operative temperature increases by 1.8°C for a 60%-covered ceiling.
机译:最近,在欧洲,热主动建筑系统(TABS)的使用已大大增加,作为建筑物的节能,经济的制冷和供暖解决方案。但是,这种广泛的解决方案要求室内具有大面积的裸露硬质表面,这可能导致室内声学舒适度下降。因此,当该系统必须与声学要求结合时会出现挑战。拱腹式吸声器体现了一种有前途的解决方案。这项研究着重于量化其对TABS制冷性能的影响,并通过吊顶甲板的制冷量系数进行评估。通过使用新型的专门开发的TRNSYS类型进行数值模拟,研究了不同的天花板覆盖率(0-30-45-60和80%)的影响以及吸收器放置距离的影响。测试是在模拟20人平方米的两人办公室的测试室中进行的,典型制冷量为42 W / m2。结果表明,在距天花板活动甲板300毫米处用吸声器击碎覆盖60%的天花板表面,有望使TABS的冷却能力系数降低15.8%。覆盖率下降到25.4%,覆盖率为80%。隔音板的存在也会影响热舒适性:前一种情况下,房间的工作温度升高0.9°C,而后者则提高到1.6°C。结果还表明,提供给机壳的舒适通风对房间的热状况有很大影响。如果取消通风,那么覆盖60%的天花板的工作温度将升高1.8°C。

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