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Calibrating the Lamodel Program for Site Specific Conditions

机译:校准Lamodel程序以获取现场特定条件

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The LaModel program has been used successfully in the United States for many years to design pillars to ensure global stability of pillar recovery operations. However, the recent Crandall Canyon Mine collapse showed that further research was required to improve the design of pillar recovery under deep cover. Toward this end, a new calibration procedure was implemented in LaModel. This calibration procedure prescribes techniques for calibrating the critical LaModel input parameters based on empirical abutment loading and pillar strength, as utilized in the time-tested ALPS and ARMPS programs. The calibration procedure is intended to help guide a novice modeler in choosing calibrated input parameters that produce a standard model that fits within the verification database. However, the rigid parameter specification incorporated in the calibration procedure also removes most of the flexibility in LaModel for specific calibration to the unique conditions at a given mine site. In this paper, a number of the LaModel input parameters are varied outside the bounds of the suggested calibration and the effects on the model results are analyzed. Ultimately, it is shown how the LaModel user might vary certain input parameters to adjust the model to site-specific conditions, while still maintaining the general accuracy and philosophy of the recommended calibration.
机译:Lamodel程序已在美国成功使用多年来设计支柱,以确保支柱恢复运营的全球稳定。然而,最近的克兰德峡谷矿山崩溃表明,需要进一步的研究来改善深层覆盖下的柱恢复的设计。朝向此结束,在Lamodel中实现了一种新的校准程序。该校准程序规定了基于经验基因负载和支柱强度校准关键层型输入参数的技术,如测试时间测试的阿尔卑斯山和ARMPS程序。校准程序旨在帮助指导新手建模程序在选择校准的输入参数时,该参数产生符合验证数据库内的标准模型。然而,在校准过程中结合的刚性参数规范也消除了Lamodel中的大部分灵活性,以便对给定矿场的特定条件进行特定校准。在本文中,在建议校准的界限之外变化了许多Lamodel输入参数,并分析了模型结果的效果。最终,示出了Lamodel用户如何改变某些输入参数以将模型调整到特定于现场的条件,同时仍然保持建议校准的一般精度和哲学。

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