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Work-Principle Model for Predicting Toxic Fumes of Nonideal Explosives

机译:预测非理想炸药有毒烟雾的工作原理模型

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The work-principle from thermodynamics was used to formulate a model for predicting toxic fumes from mining explosives in underground chamber tests,where rapid turbulent combustion within the surrounding air noticeably changes the resulting concentrations.Two model constants were required to help characterize the reaction zone undergoing rapid chemical transformations in conjunction with heat transfer and work output:a stoichiometry mixing fraction and a reaction-quenching temperature.Rudimentary theory with an unsteady uniform concentration gradient was taken to characterize the combustion zone,yielding 75% for the mixing fraction.Four quenching temperature trends were resolved and compared to test results of ammonium nitrate compositions with different fuel-oil percentages (ANFO).The quenching temperature 2345 K was the optimum choice for fitting the two major components of fume toxicity:carbon monoxide (CO) and total nitrogen oxides (NO_X).The resulting two-constant model was used to generate comparisons for test results of ANFO compositions with additives.Though respectable fits were usually found,charge formulations which reacted weakly could not be resolved numerically.The work-principle model yields toxic concentrations for a range of charge formulations,making it a useful tool for investigating the potential hazard of released fumes and reducing the risk of unwanted incidents.
机译:使用热力学的工作原理建立了一个模型,用于预测地下室试验中采矿炸药产生的有毒烟雾,其中周围空气中的快速湍流燃烧显着改变了所产生的浓度。需要两个模型常数来帮助表征正在经历的反应区结合热传递和功输出的快速化学转化:化学计量混合分数和反应淬火温度。采用不稳定浓度梯度的基本理论来描述燃烧区,混合分数的产率为75%。四个淬火温度解决了该趋势并将其与不同燃油百分比的硝酸铵组合物(ANFO)的测试结果进行了比较。淬火温度2345 K是拟合烟气毒性的两个主要成分:一氧化碳(CO)和总氮氧化物的最佳选择(NO_X)。使用了所得的两个常数模型o可以对含添加剂的ANFO组合物的测试结果进行比较。尽管通常会找到合适的拟合度,但反应较弱的装药配方无法用数值方法求解。用于调查释放的烟雾的潜在危害并降低意外事故的风险。

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