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The Thermoheliodome – “Air conditioning” without conditioning the air, using radiant cooling and indirect evaporation

机译:热风罩–使用辐射冷却和间接蒸发的“空调”,无需调节空气

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摘要

The Thermoheliodome is an experimental pavilion that explores cooling without air conditioning. The two research aims were to explore the use of indirect evaporative cooling and the geometric reflection of radiant cooling. For evaporative cooling we utilize a cooling tower outside of the pavilion to indirectly supply water chilled near the wet-bulb temperature. The radiant cooling system is made up of 55 coaxial chilled pipes each located in the central axis of cones with reflective surfaces that spectrally reflect the surface of the pipes and expand their radiant view factor to the occupants inside the pavilion. The specific geometry was digitally fabricated using an industrial robot and hot-wire foam cutter. The mean radiant temperature (MRT) was shown to be significantly decreased using thermal imaging cameras and with a novel scanning MRT sensor. The radiant cooling delivered from the fluid is maximized by reflection and concentration of heat emitted by occupants on the pipes, while the convective cooling of the air is minimized because only the small pipes are cooled and the reflecting surfaces are not, so the convective heat transfer surface area is small. Under typical indoor office conditions the ratio of radiant to convective cooling is slightly greater than one. For the Thermoheliodome the radiant ratio was greater than 10. Occupant surveys found that although the air temperature was not modified, they felt that inside the space there is a cooling sensation (p≤0.01). The day of the survey they felt on average 3°C cooler.
机译:The Thermoheliodome是一个实验性凉亭,无需空调即可探索冷却环境。两项研究的目的是探索间接蒸发冷却的使用和辐射冷却的几何反射。对于蒸发冷却,我们利用凉亭外部的冷却塔间接供应冷却至湿球温度附近的水。辐射冷却系统由55条同轴冷却管组成,每条冷却管位于圆锥的中心轴上,并具有反射面,该反射面可光谱反射管的表面并将其辐射视角扩大到展馆内的乘员。使用工业机器人和热线泡沫切割机以数字方式制造了特定的几何形状。使用热成像相机和新型扫描MRT传感器,平均辐射温度(MRT)显着降低。流体的辐射冷却通过乘员在管道上的反射和热量散发而得以最大化,而空气的对流冷却则最小化,因为仅对小管道进行了冷却而对反射面没有进行冷却,因此对流传热表面积小。在典型的室内办公室条件下,辐射与对流冷却的比率略大于1。对于The Thermoheliodome,辐射比大于10。乘员调查发现,尽管气温没有改变,但他们感觉在空间内部有凉爽的感觉(p≤0.01)。调查当天,他们平均感到凉爽3°C。

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