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Analysis of the influence of cooling jets on the wind and thermal environment in football stadiums in hot climates

机译:炎热气候橄榄球体育场风和热环境对冷热射流的影响分析

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After winning the bid of the FIFA's World Cup 2022, Qatar is facing the greatest challenges in terms of minimizing substantial energy consumptions for air-conditioning of stadiums and maintaining aero-thermal comfort for both players and spectators inside stadiums. This paper presents the results of temperature distributions and wind environment of the original stadium under the hot-humid climate and improvements on them for optimized scenarios of cooling jets. A combined computational fluid dynamics and building energy simulation approach was used to analyse the cooling performance and energy consumption per match of cooling air jets for 10 scenarios with different supply velocities, supply temperatures and locations of jets. The optimal scenario is to employ vertical jets above the upper tiers at supply temperature of 20 degrees C and velocities of 2-12 m/s, integrated with horizontal jets of the same temperature at the lower tiers with 4 m/s and around the pitch with 7 m/s. This scenario can maintain the spectator tiers at an average temperature of 22 degrees C and reduce the maximum predicted percentage of dissatisfied of thermal comfort from the original 100% to 63% for the pitch and 19% for the tiers, respectively. In terms of the energy consumption for the air-conditioning system per match, compared with one of the 2010 South Africa World Cup stadiums Royal Bafokeng stadium which consumed approximately 22.8 MWh energy for air-conditioning in winter (highest outdoor temperature 24.4 degrees C), the maximum energy consumption of the optimal scenario in November (highest outdoor temperature 34.2 degrees C) can reach 108 MWh. In addition, the spectator zones with scenario 8 have the potential to be resilient to the seasonal change of outdoor temperature if slight modifications of the supply velocities and precise temperature control on the spectator zones are applied. Moreover, the configurations presented in this paper can be used as a foundation of jets arrangement for future stadium retrofits in the hot climates.
机译:在赢得FIFA世界杯2022年的竞标后,卡塔尔在最大限度地减少体育场空调的大量能源消耗和维持体育场内玩家和观众的航空舒适性方面面临着最大的挑战。本文介绍了原始体育场的温度分布和风环境的结果,在热湿润的气候下,对冷却喷气机的优化方案进行了改进。组合的计算流体动力学和建筑能量模拟方法用于分析冷却空气喷射器的冷却性能和能耗,用于10个场景,具有不同的供应速度,供应温度和喷射器的位置。最佳场景是在高于上层上方的垂直喷射器20摄氏度和2-12米/秒的速度,与下层的水平喷射相同,在下层,带有4米/秒和间距周围的间距7米/秒。这种情况可以在22摄氏度的平均温度下维持观众层,并将最大预测百分比从原始的100%到63%的热舒适度的最大预测百分比分别为沥青,而平铺的19%。就每场比赛空调系统的能耗而言,与2010年南非世界杯体育场皇家Bafokeng体育场之一相比,冬季消耗约22.8米的空调(最高户外温度24.4摄氏度), 11月最佳情景的最大能耗(最高户外温度34.2摄氏度)可以达到108兆瓦。此外,如果施加了对观众区的供应速度和精确的温度控制,则具有场景8的观众区具有适应室外温度的季节变化。此外,本文呈现的配置可以用作喷射器布置的基础,用于炎热气候中的未来体育场改造。

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