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Analysis of Indoor Environment Safety with R32 Leaking From a Running Air Conditioner

机译:r32从运行空调泄漏的室内环境安全分析

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摘要

This paper, in the view of indoor security, analyzes the leak variation and indoor R32 concentration distribution when it leaks from the running indoor unit using experimental methods. The results show that the leak rate of R32 decreases with the air conditioner operating. And the leak process of refrigerant under operating conditions can be classified into two stages, fast leak stage and slow leak stage. The concentration of test points increases at first, then decreases and gradually stabilizes. Near the leak hole, it is the highest and varies dramatically. And it is high in the supply air mine stream, but it is only about 15% of the LFL. The concentration of the corner that the supply air cannot reached is the lowest. The indoor security during the leaking process of R32 is evaluated, and the results show that the combustible zone only appears near the leak hole, and its duration is very short. Ignition experiment is took in the combustible region and the results show that the candle flame and spark diffuse slightly, but it cannot spread effectively. It can be concluded that the hazard of using R32 as the refrigerant of air conditioner is low with the air velocity and angle keeping at 5.8m/s and 25 ° .In order to improve the security of the indoor environment further, the paper also analysis the impact of exhaust on indoor R32 concentration distribution and the results indicate that ventilation can reduce the indoor R32concentrationeffectively. Thus, it can reduce the risk of fire by opening the exhaust fan when R32 leaks with the air conditioner running.
机译:本文在室内安全性的视野中,使用实验方法分析从运行室内机泄漏时泄漏变化和室内R32浓度分布。结果表明,通过空调运行,R32的泄漏率降低。在操作条件下制冷剂的泄漏过程可以分为两个阶段,快速泄漏阶段和慢泄漏阶段。测试点的浓度首先增加,然后降低并逐渐稳定。靠近泄漏孔,它是最高的,急剧变化。它在供应空气矿山流中很高,但它只有约15%的LFL。供应空气无法达到的角落的浓度是最低的。评估R32泄漏过程中的室内安全性,结果表明,可燃区仅在泄漏孔附近出现,并且其持续时间非常短。点火实验采用可燃区域,结果表明,蜡烛火焰和火花略微漫射,但它不能有效地蔓延。可以得出结论,使用R32作为空调的制冷剂的危害与空气速度和角度保持在5.8m / s和25°。在进一步提高室内环境的安全性,本文还分析排气对室内R32浓度分布的影响及结果表明通风可以减少室内R32混合性。因此,当R32用空调运行时,它可以通过打开排气风扇来降低火灾风险。

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