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Updated: Jul 1, 2025

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Research and Development of High-performance Explosives
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模拟和模拟由硫化矿石诱导的酸爆炸物的自发爆炸
Xin Li1, Yong Guo1, Fuqiang Yang2,3
1College of Environment and Safety Engineering, Fuzhou University, No. 2 Xueyuan Road, University Town, Fuzhou, 350116, Fujian Province, China.
概括
酸和硫化矿石之间的外热反应增加了爆炸孔的温度,有可能导致矿山中的过早爆炸. 较大的爆孔直径和较高的初始温度加剧了这种风险,需要仔细的热管理.
科学领域:
- 采矿工程 采矿工程 采矿工程
- 化学工程是化学工程的重要组成部分.
- 计算科学 计算科学
背景情况:
- 酸和硫化矿石之间的外热反应在采矿中存在风险.
- 爆炸孔中的温度升高可能导致爆炸物过早引爆.
- 了解这些反应对于矿山安全至关重要.
研究的目的:
- 为了研究酸和硫化矿石反应的热特性.
- 分析爆炸孔参数对热和流体动态的影响.
- 为了提供理论指导,防止硫化矿自发爆炸.
主要方法:
- 使用COMSOL多物理进行数值模拟.
- 在爆炸装载之前和之后,在爆炸孔中的模拟温度变化.
- 分析了流体场动态,流速和气体度.
主要成果:
- 爆炸孔的温度与直径和初始温度正相关.
- 在120mm和165mm直径时观察到显著的流速变化.
- 氨 (NH3) 产量超过其他气体;NO和SO2的产量比例为1:2.
结论:
- 模拟结果为爆炸孔的热行为提供了关键的见解.
- 这些发现可以为安全协议提供信息,以减轻自发爆炸的风险.
- 优化防爆孔设计和条件可以提高采矿安全.
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