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Experimental scale model study on explosion of clean refrigerant leaked in an underground plant room

机译:地下机房泄漏清洁制冷剂爆炸的实验规模模型研究

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摘要

Several clean refrigerants widely used in new air-conditioning systems are composed of flammable propane. Leakage of the flammable refrigerant from the air-conditioning systems housed in a basement plant room would pose fire and explosion hazards. However, very few studies have been carried out to study explosion hazards of leaked clean refrigerant in underground spaces. In this paper, a model chamber with two common mechanical ventilation designs in basement plant room was used to study experimentally the hazards. Clean flammable refrigerant was discharged to the model chamber to a concentration level less than the lower flammability limit. Four sets of tests with different ventilation conditions were carried. Concentrations of the leaked refrigerant at. different positions in the chamber under different ventilation conditions were measured. Explosion of leaked gas was triggered by ignition. After ignition the transient gas temperature and pressure inside the model were recorded. Results indicate that mixing of leaked flammable refrigerant, and hence the concentrations of the leaked gas, depends on the mechanical ventilation design in the chamber. Improper ventilation provision would result in high refrigerant-to-air mixing ratio at some positions, even though the designed leaked refrigerant concentration is less than the lower flammable limit calculated from a well-mixing model. The results of the present study would contribute to better understanding of explosion hazards due to leakage of flammable refrigerant in green air-conditioning and refrigeration system in basement plant room or similar enclosures.
机译:在新型空调系统中广泛使用的几种清洁制冷剂由易燃丙烷组成。地下室机房空调系统中易燃制冷剂的泄漏会引起火灾和爆炸危险。但是,很少进行研究来研究地下空间泄漏的清洁制冷剂的爆炸危险。在本文中,在地下室的机房中使用具有两种常见机械通风设计的模型室来对危害进行实验研究。干净的易燃制冷剂被排放到模型室,其浓度水平低于可燃性下限。进行了四组具有不同通风条件的测试。泄漏的制冷剂浓度为。测量了在不同通风条件下腔室内的不同位置。点火触发泄漏的气体爆炸。点火后,记录模型内部的瞬态气体温度和压力。结果表明,泄漏的易燃制冷剂的混合以及泄漏气体的浓度取决于室内的机械通风设计。即使设计泄漏的制冷剂浓度小于根据良好混合模型计算出的可燃下限,通风不当也会导致某些位置的制冷剂与空气的混合比较高。本研究的结果将有助于更好地理解地下室或类似环境中绿色空调和制冷系统中易燃制冷剂泄漏引起的爆炸危险。

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