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首页> 外文期刊>Journal of the Southern African Institute of Mining and Metallurgy >Flyrock in surface mining – Limitations of current predictive models and a better alterative through modelling the aerodynamics of flyrock trajectory
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Flyrock in surface mining – Limitations of current predictive models and a better alterative through modelling the aerodynamics of flyrock trajectory

机译:露天采矿中的 Flyrock – 当前预测模型的局限性,以及通过对 flyrock 轨迹的空气动力学建模实现更好的替代方案

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摘要

Historical approaches to the problem of flyrock based on correlation studies and regression analysis, including artificial neural networks and similar techniques, are inherently incapable of addressing two core issues – root causes of flyrock and projection velocity. A further shortcoming of correlation techniques is that they give no information on the influence of rock size and shape on the fight distance. The scaled depth of burial model for crater blasting in the collar zone and bench face does not specifically address the question of flyrock velocity. A third approach, based on flight trajectory calculations, often neglects the very significant effects of air resistance on the trajectory. Some trajectory models incorporate air resistance but use an implausible fragment velocity model that cannot propel sizeable rocks to distances much beyond 150 m. Nonetheless, trajectory calculation incorporating the effects of air drag affords the most promising approach to the prediction of flyrock range. A unique and insightful feature of the proposed realistic flight modelling is that it collapses all suspected causes of flyrock, many of which are not well understood, to just a single parameter – the launch velocity. This indicates that the root causes of flyrock lie in the mechanisms of momentum transfer to broken rock and suggests new avenues of study.
机译:历史方法flyrock的问题基于相关性研究和回归分析,包括人工神经网络类似的技术,本质上是无能解决两个核心问题的根源flyrock和投影速度。缺点是相关技术他们给的影响岩石上的任何信息大小和形状的距离。埋藏深度的火山口爆破模型环区和长椅上面临不明确地址flyrock速度的问题。的方法,基于飞行轨迹计算,往往忽略了非常重要的空气阻力的影响轨迹。将空气阻力,但轨迹模型使用一个难以置信的片段速度模型不能推动庞大的岩石距离超过150米。将空气阻力的影响提供了最有前途的预测方法flyrock范围。提出现实的飞行造型它崩溃所有flyrock怀疑的原因,很多都不清楚,只是一个单一参数,启动速度。表明flyrock的根源在于动量转移的机制打破岩石和表明研究的新途径。

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