Air distribution in convex wall jets for ventilation with a constant air flow

V. Korbut, V. Mileikovskyi
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Abstract

The scheme of air exchange organization using air supply above a working zone by convex wall jets that interact with each other has been substantiated. This scheme is advisable in cases where it is impossible to supply air directly to the working zone. It provides optimal microclimate parameters with minimal recirculation of polluted air from the upper zone. Simulation of the air exchange organization in an exhibition hall in International Exhibition Centre in Kyiv with ventilation at a constant air volume (CAV) has been performed. The floor area is 5258 m2, the height is 19 m, the minimum outdoor air flow is 21.667 m3/s (78000 m3/h). The current design scheme of air exchange organization is zonal. General air exchange is 43.3333 m3/s (156000 m3/h). Recirculation is accepted 50 %. The air flow supplied in the upper and middle zones is, respectively, 22.5 m3/s (81000 m3/h) and 20.833 m3/s (75000 m3/h). Inlet air has temperature 291.65 K (18.5 °C). It is supplied downward by twisted jets. There are 65 Trox VDL-AHLD-E3/800/0/0/0/RAL 9010 air diffusers with a diameter of 800 mm. The proposed scheme is single-zonal using 24 diffusers PES-D-8-10/15-0,9 4 m above the floor and air removal from the upper zone. This scheme allows halving the air exchange to the minimum outdoor air without recirculation. The air temperature should be decreased by 3.3 K to 288.35 K (15.2 °С). The number of air-conditioners is decreased twice. The calculated consumption of cold decreased by 65.58 W/m2 or 29 %, the calculated consumption of heat for the second heating – by 7.17 W/m2 or 18 %. Saving of capital investments in prices of February 2020 is 792.16 UAH/m2 or 55 %, and decrease of operating costs for the cooling period is 6.61 UAH/m2 or 15 %. Thus, the system is economically beneficial from the beginning of its installation. In the future, its operation will be simulated in a mode with a variable flow rate.
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恒定气流通风凸壁射流中的气流分布
利用凸壁射流相互作用在工作区域上方供气的换气组织方案得到了证实。在不可能直接向工作区送风的情况下,这种方案是可取的。它提供了最佳的小气候参数与最小的再循环污染空气从上层区域。对基辅国际展览中心某展览馆进行了恒风量通风(CAV)条件下的空气交换组织模拟。建筑面积5258 m2,高19 m,室外最小风量21.667 m3/s (78000 m3/h)。目前换气机构的设计方案是分区式的。总换气量为43.3333 m3/s (156000 m3/h)。50%接受再循环。上部送风流量为22.5 m3/s (81000 m3/h),中部送风流量为20.833 m3/s (75000 m3/h)。进气温度为291.65 K(18.5°C)。它由扭曲的射流向下供给。有65个Trox VDL-AHLD-E3/800/0/0/0/RAL 9010空气扩散器,直径为800毫米。提议的方案是单区域,使用24个扩散器PES-D-8-10/15-0,地板上方94米,空气从上层区域排出。该方案允许将空气交换量减半到最小的室外空气,而不需要再循环。空气温度应降低3.3 K至288.35 K(15.2°С)。空调的数量减少了两倍。计算出的冷耗减少了65.58 W/m2或29%,第二次供暖的计算热量消耗减少了7.17 W/m2或18%。2020年2月的价格节省资本投资792.16 UAH/m2,即55%,冷却期运行成本降低6.61 UAH/m2,即15%。因此,该系统从安装之初就具有经济效益。未来将采用变流量模式对其运行进行模拟。
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