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Wind flow modification by a jet roof for mitigation of snow cornice formation

机译:喷射屋顶的风流改造,用于减轻雪檐口形成

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The snow cornice mass on the formation zone had triggered avalanches which led to the loss of human life and property. Snow cornice is formed due to flow separation on the leeward side. Effect of lee slope is more prominent in the formation of snow cornices as compared to the windward slope. The analysis of wind flow pattern has been carried out to evaluate the performance of a jet roof. Computational Fluid Dynamics (CFD) analysis of wind flow over a 2D hill model was carried out using RNG based k-ε turbulence models available in ANSYS Fluent. Effect of varying leeward hill slope (1:2 to 1:6) on flow separation for the given windward slope was observed and a critical slope of 1:4 was found at which the separation zone ceased to exist. The modification of wind flow over a hill due to the installation of jet roof was simulated. It was observed that jet roof had significantly modified the wind flow pattern around hill ridgeline and ultimately snow cornice formation had mitigated. The results of the wind flow pattern were validated with the wind data collected at the experimental site, Banihal Top (Jammu and Kashmir, India). The wind flow simulation over the hill and mitigation of cornice formation by the jet roof has been explained in the present paper.
机译:地层区上的雪檐肿块触发了雪崩,导致人类生命和财产的丧失。由于背风侧的流动分离,雪檐口形成。与迎风斜坡相比,李坡在雪崩的形成中更加突出。已经进行了风流量模式的分析,以评估喷射屋顶的性能。使用基于RNG的K-ε湍流模型进行了在2D山模型上进行的计算流体动力学(CFD)分析。观察到对给定的迎风斜面的流动分离的改变的Leeward Hill斜率(1:2至1:6)的影响,并且发现了1:4的临界斜率,在该临界斜率上被停止存在。模拟了由于安装喷射屋顶的山丘上的风流量的修改。观察到喷气车顶有显着修改了山坡上的风力模式,最终已经减轻了雪檐曲线形成。随着实验部位,Banihal Top(Jammu和Kashmir,India)收集的风数据验证了风流量模式的结果。本文已经解释了喷气车顶上山丘上的风流量模拟和喷射屋顶的檐口形成。

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