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Optimization of Ventilation and Alarm Setting During the Process of Ammonia Leak in Refrigeration Machinery Room Based on Numerical Simulation

机译:基于数值模拟的制冷机械室氨泄漏过程中通风和报警设定的优化

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摘要

In order to optimize the ventilation effect of ammonia leakage in the refrigeration machinery room, a food processing enterprise is selected as the subject investigated. The velocity and concentration field distribution during the process of ammonia leakage are discussed through simulation of refrigeration machinery room using CFD software. The ventilation system of the room is optimized in three aspects which are named air distribution, ventilation volume and discharge outlet. The influence of the ammonia alarm system through ventilation is also analyzed. The results show that it will be better to set the discharge outlet at the top of the plant than at the side of the wall, and the smaller of the distance between the air outlet and the ammonia gathering area, the better of the effect of ventilation will be. The air flow can be improved and the vortex flow can be reduced if the ventilation volume, the number of air vents and the exhaust velocity are reasonably arranged. Not only the function of the alarm could be ensured, but also the scope of the detection area could be enlarged if the detectors are set on the ceiling of the refrigeration units or the ammonia storage vessel.
机译:为了优化氨泄漏在制冷机械室中的通风效果,选择食品加工企业作为调查的主题。通过使用CFD软件的制冷机械室仿真讨论了氨泄漏过程中的速度和浓度场分布。房间的通风系统在三个方面进行了优化,该方面被命名为空气分布,通风量和排出口。还分析了通过通风的氨报警系统的影响。结果表明,将植物顶部的排出口放在墙壁上,以及空气出口与氨聚集区域之间的距离较小,更好的通风效果将会。如果通风体积,空气通风口的数量和排气速度,可以改善气流,并且可以合理地布置空气通风口的数量和排气速度。不仅可以确保警报的功能,而且如果在制冷单元的天花板上或氨储存容器上设定了检测器,则可以放大检测区域的范围。

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