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Numerical investigation of ventilation efficiency in a Combat Arms training facility using computational fluid dynamics modelling

机译:使用计算流体动力学建模的作战武器训练设施通风效率的数值研究

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摘要

Firing ranges critically depend on ventilation systems to minimize the exposure of personnel to ammunition refuse. A numerical analysis utilizing a computational fluid dynamics (CFD) method was used to simulate the ventilation system and predict airflow patterns within a 122-foot long, military firing range housing 21 firing stalls. The intent for this model was to identify back circulation causing firing emissions to entrain in occupied areas. Measured values at several locations within the facility were used for either input values in the model or for validation of the model solution. The analysis evaluated massless particles released at three heights to correspond with standing, kneeling, and prone firing positions. Additional predictions were completed using the recommended technical guidance for ventilation of small arms firing ranges to compare against flow dynamics of the current system. The results revealed particles circulating back behind the shooter and into the personnel occupied area. Lower supply air velocities correspond to more uniform flow and successful movement of particles downrange in the small arms firing range under investigation. The ventilation air velocity at the firing line recommended by the design guide was not achieved consistently despite the supply air velocity being set to design guide values. Overall, the results demonstrated that CFD models are useful aides for optimizing supply air velocities in current firing range facilities and for evaluating and developing design standards that provide the proper ventilation required for the health and safety of building occupants.
机译:射击范围批判性地取决于通风系统,以最大限度地减少人员暴露于弹药垃圾。利用计算流体动力学(CFD)方法的数值分析用于模拟通风系统,并在122英尺长的军用射击范围壳体21发射档位内预测气流模式。该模型的意图是识别循环导致射击排放以占用占用区域。设施内的几个位置处的测量值用于模型中的输入值或用于验证模型解决方案。该分析评估了在三个高度以三个高度释放的无麻自动粒子,以对应于静态,跪和易于烧制位置。使用推荐的小武器发射范围的推荐技术指导来完成附加预测,以与当前系统的流动动态进行比较。结果显示循环后面循环的颗粒,并进入人员占用区域。较低的供气空气速度对应于在调查中的小武器射击范围内颗粒的更均匀的流动和成功运动。尽管供应空气速度设定为设计指导值,但设计指南推荐的触发线的通风空气速度不会始终如一。总体而言,结果表明,CFD模型是用于优化当前发射范围设施中的供应空气速度的有用助流,以及评估和开发设计标准,为建筑物的健康和安全提供适当的通风。

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