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Control of spontaneous combustion using pressure balancing techniques.

机译:使用压力平衡技术控制自燃。

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摘要

Coal has an inherent tendency to combust in presence of oxygen. This phenomena is termed as spontaneous combustion of coal. Pressure balancing is a tool that can be used to solve the problem. Pressure balancing is the technique of equalizing pressure differentials between two areas such as mine gob and its surroundings so that the flow of air or the ingress of oxygen to the cave area is reduced or eliminated.;Critical factors affecting spontaneous combustion of coal are thoroughly evaluated. These factors include not only the quality of coal but also geological features and mining methods used to extract the coal. The propensity of coal to self-heating can be determined by using a software such as SPONCOM developed for this purpose.;There are two types of pressure balancing namely passive and active. Passive balancing is desirable, as it can be achieved using passive means such as regulators and fans. Dynamic pressure balancing is another type of passive pressure balancing in which chambers are established and pressurized using airflow existing in the mines. If a passive balancing technique is not adequate, then an active pressure balancing could be used. Inert gas is used to pressurize the chamber in an active pressure balancing method.;The University of Utah ventilation laboratory model was upgraded to include an atmospheric monitoring system. The model was used to conduct several experiments to equalize pressure differential across the simulate gob.;All the vital ventilation control parameters can be observed and recorded using this system. Furthermore, a sub-routine was developed to accomplish the pressure balancing system automatically.;Three underground coal mines have been visited as part of this study: one room and pillar and two long wall mines. The objective was to conduct pressure-quantity surveys, and to determine the pressure differentials across the stoppings used to isolate the worked-areas. The results of the surveys conducted in the room and pillar mine are presented and discussed in this study. The study concludes with an inventory of hazards related to spontaneous combustion, control measures, and risk analyses to identify the critical factors.
机译:煤具有在氧气存在下燃烧的固有趋势。这种现象称为煤的自燃。压力平衡是可以用来解决问题的工具。压力平衡是一种平衡两个区域(例如矿山采空区)及其周围环境之间的压差,从而减少或消除空气流动或氧气进入洞穴区域的技术;彻底评估了影响煤自燃的关键因素。这些因素不仅包括煤炭的质量,还包括用于开采煤炭的地质特征和采矿方法。可以使用为此目的开发的软件,例如SPONCOM来确定煤的自热倾向。压力平衡有两种类型,即被动压力平衡和主动压力平衡。被动平衡是可取的,因为可以使用诸如调节器和风扇的被动方式来实现。动态压力平衡是另一种被动压力平衡,其中利用矿井中存在的气流建立腔室并对其加压。如果被动平衡技术不充分,则可以使用主动压力平衡。惰性气体用于通过主动压力平衡方法对腔室加压。犹他大学通风实验室模型已升级为包括大气监测系统。该模型用于进行多个实验,以均衡模拟采空区之间的压力差。使用该系统可以观察并记录所有重要的通风控制参数。此外,还开发了一个子程序来自动完成压力平衡系统。这项研究的一部分访问了三个地下煤矿:一个房间和一个支柱煤矿和两个长壁煤矿。目的是进行压力数量调查,并确定用于隔离工作区域的各个挡块之间的压力差。在本研究中介绍并讨论了在机房和矿井中进行的调查的结果。该研究最后总结了与自燃有关的危害清单,控制措施以及确定关键因素的风险分析。

著录项

  • 作者

    Jha, Ankit.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Mining engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 96 p.
  • 总页数 96
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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