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Distribution -The Weak Link in Paste Backfill

机译:分布-粘贴回填中的薄弱环节

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Data is now appearing in literature that indicates many current paste fill systems in Canada suffer from plugged lines and severe wear rates. Both of these conditions suggest: design problems with the pipe distribution system, backfill composed of poorly graded material and/or possibly poor operator practices. Problems that can be prevented in the design stage, but still may be readily solvable with current technology. However, if left untreated will lead to an increasing frequency of down time. The compatibility of the distribution system with the paste fill rheology is fundamental and essential for the reliable delivery of fill. Either many mine operators are not familiar enough with the technology to provide a critical review that could foresee problems down the road, prior to construction and or North American designers are not clarifying their designs to their customers. The objective of this paper is to highlight key concepts to mine operators with the purpose of better enabling a critical review of contractor's/consultant's designs. There is a great deal of understanding about the rheology of backfill over a range of pulp densities from hydraulic slurry to dense to paste. However, outside of deep mines (especially in South Africa) neither hydraulic or dense fill distribution systems have suffered the problems of paste fill. Paste fill is fundamentally different from hydraulic fill principally in its transportation characteristics. These differences have a direct impact on the design of the distribution system. By understanding the practical implications of these differences the operator can play a more active role in their design while better appreciating how to best operate their own system.
机译:文献中现在出现的数据表明,加拿大目前的许多浆料填充系统都存在线路堵塞和严重磨损的问题。这两个条件都表明:管道分配系统存在设计问题,由等级不佳的材料组成的回填和/或操作人员的做法可能不佳。在设计阶段可以避免的问题,但是使用当前技术仍然可以轻松解决。但是,如果不及时处理,将导致停机时间增加。分配系统与糊状填充流变学的兼容性对于可靠地填充填充物至关重要。可能是许多矿山运营商对这项技术不够熟悉,以至于在施工之前或北美设计师没有向其客户澄清其设计之前,就可能进行预见的问题进行严格的审查。本文的目的是向矿山经营者突出关键概念,以更好地对承包商/顾问的设计进行严格审查。关于回填的流变学,从水硬性浆液到稠密浆液,其浆密度范围广泛,人们对此有很多了解。但是,在深部矿山之外(尤其是在南非),水力或密集的填充物分配系统都没有遇到膏状填充物的问题。糊状填充物与水硬性填充物的主要区别在于运输特性。这些差异直接影响配电系统的设计。通过了解这些差异的实际含义,操作员可以在设计中扮演更积极的角色,同时更好地了解如何以最佳方式操作自己的系统。

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