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首页> 外文期刊>Journal of loss prevention in the process industries >Effect of super-ambient conditions on the upper explosion limit of ethane/oxygen and ethylene/oxygen mixtures
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Effect of super-ambient conditions on the upper explosion limit of ethane/oxygen and ethylene/oxygen mixtures

机译:超级环境条件对乙烷/氧气和乙烯/氧气混合物的上爆积极限的影响

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摘要

The upper explosion limit (UEL) of ethane/oxygen and ethylene/oxygen at elevated pressures up to 2.6 MPa and temperatures up to 543.15 K were measured. A coiled nichrome hotwire placed at the center of the vessel was used as the ignition source. Explosion is said to have taken place if there is a pressure rise of at least 5% of the initial pressure in the vessel after ignition. Experimental data obtained in the 1.5 L cylinder and the 20 L sphere had a difference less than 0.5%. Results showed that the test data obtained in the 1.5 L cylinder were reliable (with the relative standard deviation less than 0.15%), and can be used for industrial applications. Leveling off curves of UEL in oxygen depended on temperature and linear (logarithmic) relationships depended on pressure were shown. The transition pressures of 1.6 MPa (ethane/oxygen) and 1.0 MPa (ethylene/oxygen) which made the slope (increasing rate) of UEL curves change from pressure-sensitive to temperature-sensitive were found. Algebraic equations were established for assessing the data of UEL of ethane/ethylene in oxygen at elevated conditions straightforward.
机译:测量升高压力高达2.6MPa的乙烷/氧和乙烯/氧气的上部爆炸极限(UEL)和高达543.15k的温度。将载体位于容器中心的卷绕的镍铬物炎·暖维线用作点火源。据说爆炸已经发生,如果在点火后的血管中的至少5%的初始压力的压力上升至少5%。在1.5L气缸和20L球体中获得的实验数据具有小于0.5%的差异。结果表明,在1.5L气缸中获得的测试数据可靠(具有相对标准偏差小于0.15%),可用于工业应用。依赖于温度和线性(对数)关系依赖于压力的温度和线性(对数)关系的uel调平曲线。发现了1.6MPa(乙烷/氧气)和1.0MPa(乙烯/氧气)的过渡压力,使UEL曲线的斜率(升高率)从压敏敏感的压敏改变变化。建立了代数方程,用于评估氧气在升高条件下氧气/乙烯在氧气中的数据的数据。

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