NEW IMPROVEMENTS TO MFIRE TO ENHANCE FIRE MODELING CAPABILITIES.

L Zhou, A C Smith, L Yuan
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引用次数: 10

Abstract

NIOSH's mine fire simulation program, MFIRE, is widely accepted as a standard for assessing and predicting the impact of a fire on the mine ventilation system and the spread of fire contaminants in coal and metal/nonmetal mines, which has been used by U.S. and international companies to simulate fires for planning and response purposes. MFIRE is a dynamic, transient-state, mine ventilation network simulation program that performs normal planning calculations. It can also be used to analyze ventilation networks under thermal and mechanical influence such as changes in ventilation parameters, external influences such as changes in temperature, and internal influences such as a fire. The program output can be used to analyze the effects of these influences on the ventilation system. Since its original development by Michigan Technological University for the Bureau of Mines in the 1970s, several updates have been released over the years. In 2012, NIOSH completed a major redesign and restructuring of the program with the release of MFIRE 3.0. MFIRE's outdated FORTRAN programming language was replaced with an object-oriented C++ language and packaged into a dynamic link library (DLL). However, the MFIRE 3.0 release made no attempt to change or improve the fire modeling algorithms inherited from its previous version, MFIRE 2.20. This paper reports on improvements that have been made to the fire modeling capabilities of MFIRE 3.0 since its release. These improvements include the addition of fire source models of the t-squared fire and heat release rate curve data file, the addition of a moving fire source for conveyor belt fire simulations, improvement of the fire location algorithm, and the identification and prediction of smoke rollback phenomena. All the improvements discussed in this paper will be termed as MFIRE 3.1 and released by NIOSH in the near future.

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对mfire进行了新的改进,增强了火灾建模能力。
NIOSH的矿井火灾模拟程序MFIRE被广泛接受为评估和预测火灾对矿井通风系统的影响以及煤和金属/非金属矿山中火灾污染物扩散的标准,该程序已被美国和国际公司用于模拟火灾以进行规划和响应。MFIRE是一个动态的、瞬态的矿井通风网络仿真程序,可以进行正常的规划计算。它还可以用于分析通风网络在热学和力学影响下(如通风参数的变化)、外部影响(如温度变化)和内部影响(如火灾)的情况。程序输出可用于分析这些影响因素对通风系统的影响。自20世纪70年代由密歇根理工大学为矿业局最初开发以来,多年来已经发布了几次更新。2012年,NIOSH完成了MFIRE 3.0的重新设计和重组。MFIRE过时的FORTRAN编程语言被面向对象的c++语言取代,并打包成动态链接库(DLL)。然而,MFIRE 3.0版本并没有尝试改变或改进从上一个版本MFIRE 2.20继承的火灾建模算法。本文报告了自MFIRE 3.0发布以来对火灾建模能力所做的改进。这些改进包括增加了t平方火灾和热量释放率曲线数据文件的火源模型,增加了输送带火灾模拟的移动火源,改进了火灾定位算法,以及烟雾回滚现象的识别和预测。本文中讨论的所有改进将被命名为MFIRE 3.1,并在不久的将来由NIOSH发布。
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