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When Traditional Ground Support Techniques Aren't Enough-Chemical Injections Can Solve Complex Problems

机译:当传统的地面支持技术不够化学注入即可解决复杂问题时

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Broken and jointed ground is extremely hazardous and requires unique stabilization techniques to protect worker and critical entries. Bolting techniques, even the most advanced with pre-load to create roof compression, can leave large gaps of unconfined and separated roof. This roof can also be susceptible to water inflows which only exacerbate the support problem. These types of conditions existed on long term development main entry accessing several future longwall panels. The geotechnical assessment identified well-defined jointing systems that also permitted water to flow between the roof separations, which "lubricated*" the roof material and minimized any frictional advantages. Chemical injection of a Polyurethane material. Minova Carbopur WS, was placed beyond the bolted horizon to move the water to the rib lines and reinforce the fractured and broken roof. The injection material permitted the effective use of bolting patterns and helped ensure long-term stability of these critical entries. The paper describes the evaluation techniques, design patterns, basis for chemical selection and application, and results and recommendations.
机译:破碎的地面非常危险,需要采用独特的稳定技术来保护工人和重要的入口。螺栓技术,即使是最先进的预紧力,也能产生屋顶压紧力,但会留下很大的空隙,从而限制了屋顶的空间。该屋顶也容易受到水流入的影响,这只会加剧支撑问题。这些类型的条件存在于长期开发的主要入口中,可以访问多个将来的长壁板。岩土工程评估确定了定义明确的连接系统,该系统还允许水在顶板间隔之间流动,从而“润滑*”顶板材料并使摩擦优势降至最低。聚氨酯材料的化学注入。 Minova Carbopur WS被放置在螺栓固定的水平线上,以将水移动到肋骨线处,并加固破裂和破碎的屋顶。注射材料可有效利用螺栓连接方式,并有助于确保这些关键入口的长期稳定性。本文介绍了评估技术,设计模式,化学选择和应用的基础以及结果和建议。

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