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Shear Strength Framework for Design of Dumped Spoil Slopes for Open Pit Coal Mines

机译:倾销碎片煤矿抛弃坡设计的剪力强度框架

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Modern open pit coal mining results in dumped spoil slopes typically between 80m and 250m high. Stability can be compromised by weak geological conditions, seepage, slaking of clayey spoil materials, and dumping processes. The consequences of failure are expensive and may be catastrophic. Dump design is challenging because there is usually no opportunity for site-specific investigations and testing. A shear strength framework for open pit coal spoil dump materials has been developed for reliable assessment of shear strength parameters from visual-tactile observations. Although originally developed for the Permian Bowen Basin of eastern Australia, it is argued that the framework is applicable for coal measures materials generally. Vital to the framework are an understanding of geological conditions and a robust process for assessing relevant attributes of dumped material. The factors that must be taken into account for dump stability assessment are described. Verification of the strength parameters involved rigorous backanalysis, requiring the Sarma method for non-vertical slices in order to replicate observed characteristics of dump slope failures. The framework has limitations, and the most significant of these are discussed. Non-routine problems still require sound application of engineering judgement and risk management principles.
机译:现代露天煤矿开采导致倾倒的弃油坡通常在80米和250米之间。稳定性可以通过弱地质条件,渗流,粘土弃土材料和倾倒过程损害。失败的后果昂贵,可能是灾难性的。转储设计是具有挑战性的,因为通常没有机会特定的调查和测试。开发了露天煤炭弃土材料的剪力强度框架,用于可靠地评估视觉触觉观察的剪切强度参数。虽然最初为澳大利亚东部的二叠纪鲍文盆地开发,但据称该框架通常适用于煤炭措施材料。对框架至关重要的是了解地质条件和评估倾倒材料的相关属性的强大进程。描述了必须考虑转储稳定性评估的因素。验证强度参数涉及严格的背面分析,需要对非垂直切片进行SARMA方法,以便复制转储斜率故障的观察特性。框架有局限性,并且讨论了最重要的。非常规问题仍然需要合理地应用工程判断和风险管理原则。

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