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Simulation of Atmospheric Flow Characteristics and Selection of Models for Artificial Simulated Fog-Haze Environment

机译:大气流动特性模拟及人工模拟雾霾环境的选择

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摘要

The devices for artificial flashover experiment should be constructed and the stability of the airflow field is the key to construct it. This work presents a methodology of constructing three models respectively without blades, with straight blades and with curved blades, coupled for artificial simulated fog-haze environment with computational fluid dynamics (CFD), to predict the impact of the rotating blades on the flow velocities in the enclosed environment by simulation. Atmospheric flow characteristics and variation of flow velocities were analyzed, and the influences of different rotating blades on flow velocities were compared to get the related simulation results in three models. It is showed that the flow velocities increase with the increase of device & x2019;s Y coordinate. Compared with the variation of flow velocities in the model without blades, it is confirmed that the variation of flow velocities in two models with blades is reduced relatively, in which the variation of flow velocities in the model with straight blades is lower and more stable. Therefore, the designed model with straight blades will be developed for artificial flashover experiment.
机译:应构造用于人造闪络实验的装置,气流场的稳定性是构建它的关键。该工作介绍了分别构造三种模型的方法,其中没有刀片,具有直叶片和具有弯曲刀片,耦合用于使用计算流体动力学(CFD)的人工模拟雾霾环境,以预测旋转叶片对流速的影响通过模拟封闭的环境。分析了大气流动特性和流速的变化,并比较了不同旋转叶片对流速的影响,以获得3个模型的相关模拟结果。结果表明,流速随着器件的增加而增加,x2019; s y坐标。与没有刀片的模型中的流速的变化相比,确认两个带叶片的模型中的流速的变化相对减小,其中具有直叶片的模型中的流速的变化越来越稳定。因此,将开发具有直叶片的设计模型用于人工闪络实验。

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