首页> 外文期刊>Journal of loss prevention in the process industries >The application of kinetics based simulation method in thermal risk prediction of coal
【24h】

The application of kinetics based simulation method in thermal risk prediction of coal

机译:基于动力学的模拟方法在煤热风险预测中的应用

获取原文
获取原文并翻译 | 示例
       

摘要

Coal spontaneous combustion is one of the major natural disasters faced in coal mines. The accurate prediction of the thermal risk of coal is of great importance. However, there isn't a widely accepted approach to get the oxidation process of coal that under adiabatic condition or in a specific environment under mine at present. To demonstrate whether the advanced kinetics simulation method could be employed to obtain the accurate oxidation process of coal for determining the coal's thermal risk in the mine design phase and mining phase, DSC experiments were conducted by C80 micro-calorimeter to get the heat behavior of coal, based on which the kinetic parameters can be solved and the oxidation process of coal can be predicted. The results showed that the kinetics based simulation method was successfully used to predict the adiabatic temperature rise process of coal for risk prediction. The deviation between the predicted curve and tested curve that obtained by adiabatic test is small enough to be accepted. Kinetics based simulation method is a promising candidate, instead of adiabatic test, to assess the propensity of coal to spontaneous combustion, which can play an important role in the design phase of the mine and mining area. Moreover, through establishing the heat balance equation of residual coal and with the aid of kinetics based simulation method, the oxidation process of coal that in the suffocation zone of the gob was also accurately predicted. According to the index t_(70) (the time required for coal to reach 70℃) and v_(min) (the lower limit of the advancing speed of the working face) obtained from the predicted curve, the thermal risk of coal was predicted to guide the further adjustment of the advancing speed of the working face, the amount of the injected mud and the determination that whether to add other fire prevention measures. Kinetics based simulation method, be of great practical importance in risk prediction of coal that in the gob, can be also used as a convenient tool to guide the safe production in the actual mining process.
机译:煤炭自燃是煤矿面临的主要自然灾害之一。准确预测煤的热风险非常重要。然而,目前还没有一种广泛接受的方法来获得处于绝热条件下或在矿井中特定环境下的煤的氧化过程。为了说明是否可以使用先进的动力学模拟方法来获得准确的煤氧化过程,从而确定矿山设计阶段和采矿阶段的煤热风险,使用C80微热量计进行了DSC实验,以获取煤的热行为。 ,据此可以求解动力学参数并可以预测煤的氧化过程。结果表明,基于动力学的模拟方法已成功地用于预测煤的绝热温升过程,以进行风险预测。通过绝热测试获得的预测曲线和测试曲线之间的偏差小到可以接受。基于动力学的模拟方法是一种有前途的候选方法,可以代替绝热测试来评估煤的自燃倾向,这在矿山和矿区的设计阶段中可以发挥重要作用。此外,通过建立残余煤的热平衡方程,并借助基于动力学的模拟方法,还可以准确地预测在采空区窒息区的煤的氧化过程。根据预测曲线获得的指标t_(70)(煤达到70℃所需的时间)和v_(min)(工作面前进速度的下限),可以预测煤的热风险指导进一步调整工作面的行进速度,注入的泥浆量以及确定是否增加其他防火措施。基于动力学的模拟方法在采空区煤的风险预测中具有重要的现实意义,也可作为指导实际开采过程中安全生产的便捷工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号