二氧化碳爆破系统热力学性质及爆炸能分析

IF 1.8 Q3 MINING & MINERAL PROCESSING
Bo Ke, K. Zhou, Chaoshui Xu, G. Ren, Tingting Jiang
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引用次数: 9

摘要

二氧化碳(CO2)爆破系统是一种可重复使用的非爆炸性爆破产品,可用于许多工程应用。为了研究相变过程中液态CO2热力性质及其爆炸能量的影响,在实验室对液态CO2爆破系统的爆管内压力进行了测量。根据实测压力曲线,将CO2爆破过程分为升压阶段、泄压阶段和恢复压力阶段。详细分析了CO2爆破系统的温度、压力、相变和爆炸能量的变化规律。结果表明:随着CO2初始密度的减小,温度变化率增大;初始CO2密度对其等时热容的影响也很显著,初始密度越低,临界温度峰值比热容越高。基于Span和Wagner CO2状态方程和爆炸热力学,提出了一种计算CO2爆破系统爆炸能量的方法。这种方法得到的结果更准确、更真实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermodynamic properties and explosion energy analysis of carbon dioxide blasting systems
ABSTRACT A carbon dioxide (CO2) blasting system is a reusable non-explosive blasting product that can be used in many engineering applications. To investigate the influences of thermodynamic properties of liquid CO2 and its explosion energy during the phase transition, the pressure within the blasting tube was measured in a laboratory for a liquid CO2 blasting system. Based on the measured pressure curve, the CO2 blasting process can be divided into three stages: pressure rising stage, pressure release stage and pressure recovery stage. The evolutions of temperature, pressure, phase transition and explosion energy of the CO2 blasting system were analysed in detail in this work. The results show that the variation rate of temperature increases as the initial density of CO2 decreases. The effect of initial CO2 density on its isochoric heat capacity is also significant as the lower the initial density, the higher the peak specific heat capacity at the critical temperature. Based on the Span and Wagner CO2 equation of state and the thermodynamics of explosions, a method is proposed to calculate the explosion energy of CO2 blasting systems. This method produces more accurate and realistic results.
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来源期刊
CiteScore
2.20
自引率
9.10%
发文量
5
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