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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Comfort cooling by wind towers in the Australian residential context - Experimental wind tunnel study of comfort
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Comfort cooling by wind towers in the Australian residential context - Experimental wind tunnel study of comfort

机译:澳大利亚住宅上下文中的风塔舒适冷却 - 实验风洞的舒适性研究

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摘要

Comfort performance of a wind tower in a residential setting was evaluated in a series of wind tunnel experiments using a sealed, four storey apartment building model at 1:100 scale. This study was structured into three phases; first, the pressure distribution over the wind tower openings and the building fenestrations were measured in a boundary layer wind tunnel. From these data, internal bulk flow air change rates and mean indoor room air speeds were derived. Second, the pressure coefficient results of the first phase were applied to the Sydney Typical Meteorological Year (TMY) to assess the ventilation performance of the wind tower in terms of hourly indoor air speed. Wind tower results were benchmarked against through-window cross ventilation. In the third phase, increased indoor air speeds under wind tower ventilation were processed through the Standard Effective Temperature (SET*) comfort model to compute the additional comfort degree hours resulting from inclusion of a wind tower. Results indicate that the wind tower reduced indoor SET* values by an average 3.2 degrees C relative to conventional through-window cross-ventilation during Sydney's summer when outdoor temperatures were warmer than neutral.
机译:在一系列风洞实验中使用密封的四层公寓建筑模型,在1:100规模的一系列风洞实验中评估了居住环境中的风塔的舒适性能。本研究的结构化为三个阶段;首先,在边界层风隧道中测量风塔开口和建筑物衰落上的压力分布。从这些数据,导出内部散装流量空气变化率和平均室内空气速度。其次,将第一阶段的压力系数结果应用于悉尼典型的气象年(TMY),以评估风塔在每小时室内空气速度方面的通风性能。风塔的结果与窗户交叉通风有基准。在第三阶段,通过标准有效温度(设定*)舒适性模型处理风塔通风下的室内空气速度增加,以计算包含风塔所产生的额外的舒适度小时。结果表明,当户外温度升温时,风塔在悉尼夏季夏季夏季夏季的常规通风跨通风时,平均设定*值平均3.2摄氏度。

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