首页> 外文会议>Proceedings 19th International Conference on Ground Control in Mining, 19th, Aug 8-10, 2000, Morgantown, WV, USA >Optimizing Secondary Roof Support with the NIOSH Support Technology Optimization Program (STOP)
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Optimizing Secondary Roof Support with the NIOSH Support Technology Optimization Program (STOP)

机译:使用NIOSH支持技术优化程序(STOP)优化辅助屋顶支架

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The decade of the 90's brought an unprecedented increase in the development of innovative technologies to provide more effective and easier to install roof support in underground mines. To facilitate the application of these technologies to improve mine safety, National Institute for Occupational Safety and Health (NIOSH) developed the Support Technology Optimization Program (STOP). STOP is a window's based software program that provides mine operators with a simple and practical tool to make engineering decisions regarding the selection and placement strategy of these various standing roof support technologies. This program includes a complete data base of the support characteristics and loading profiles obtained through safety performance testing of these supports at the NIOSH Safety Structures Testing Laboratory. Support design criteria in the form of the required support load density at a specified convergence can be established from four options: (1) a data base of measured ground reaction data from various mines or ground behavior information inputted by the user, (2) determination of loading requirements based on a detached roof block or rock failure height, or (3) criteria based on the current roof support system, and (4) arbitrary criteria set the by user. Using these design criteria, the program will determine the installation requirements for a particular support technology that will provide the necessary support load density and convergence control. Optimization routines are also available to determine the most efficient support design for a user specified support installation. In addition to these performance measures, STOP can be used to compare material handling requirements and installation costs. Comparisons among the various support technologies are easily made including graphical analysis of relevant support parameters. This paper describes the STOP and its application to optimize standing secondary roof support systems.
机译:90年代的十年带来了创新技术发展的空前增长,以在地下矿井中提供更有效,更容易安装的屋顶支架。为了促进这些技术的应用以提高矿山安全性,美国国家职业安全与健康研究所(NIOSH)制定了支持技术优化计划(STOP)。 STOP是基于窗口的软件程序,可为矿山经营者提供一个简单实用的工具,以针对各种立式屋顶支撑技术的选择和放置策略做出工程决策。该程序包括在NIOSH安全结构测试实验室通过对这些支撑物进行安全性能测试而获得的支撑物特征和载荷曲线的完整数据库。可以从四个选项中建立处于指定收敛点时所需支撑负载密度形式的支撑设计标准:(1)来自各种矿山的实测地面反应数据或用户输入的地面行为信息的数据库,(2)确定基于独立的屋顶砌块或岩石破坏高度的荷载要求,或(3)基于当前屋顶支撑系统的准则,以及(4)用户设置的任意准则。使用这些设计标准,程序将确定特定支撑技术的安装要求,该技术将提供必要的支撑负载密度和收敛控制。优化例程也可用于确定用户指定的支持安装的最有效的支持设计。除了这些性能指标外,STOP还可以用来比较物料搬运要求和安装成本。可以轻松进行各种支持技术之间的比较,包括相关支持参数的图形分析。本文介绍了STOP及其在优化站立式辅助屋顶支撑系统中的应用。

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