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Analytical Modeling of PDC Single Cutter-Rock Interaction under Confining Pressure

机译:限制压力下PDC单刀岩相互作用的分析模型

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Slow penetration rate is a major factor in the high cost of deep drilling operations worldwide. A contributing factor is the excessive energy required to create and transport rock cuttings under high confining pressure. This work describes a new analytical single cutter model of cutting rock under confining pressure that was adapted from a model of machining metal. The original model quantifies an increase in shear plane area resulting from an increase in friction on the cutter face and/or in back rake angle based on the principle of minimum energy. An adaptation of the model accounts for the effects of the confined shear strength of the rock and confining pressure-induced friction on the shear plane. Additional model terms were developed to account for the effect of specific dysfunctions, i.e. cutter balling and severe "global" balling. The model predicts distinctive characteristics of each condition: no dysfunction, cutter balling, and global balling in addition to unique changes in these characteristics as a function of confining pressure. The relevance of model predictions is supported by comparison to single cutter test results on shales.
机译:渗透率缓慢是全球深层钻井业务成本的主要因素。贡献因素是在高限制压力下创建和运输岩石切割所需的过度能量。这项工作描述了一种新的分析单刀具模型,其在限制压力下的切割岩石型,这是从加工金属模型调整的。原始模型量化由于基于最小能量的原理而导致的剪切平面区域增加,导致切割器面上的摩擦和/或背面耙角。模型的适应性占岩石和限制压力引起的剪切平面上限的限制剪切强度的影响。开发了额外的模型术语,以考虑特定功能障碍的效果,即切割器弹道和严重的“全球”球。该模型预测了每个条件的独特特征:除了这些特性的独特变化之外,无功能障碍,刀片球和全局球形,作为限制压力的函数。通过对Shales的单刀测试结果比较,支持模型预测的相关性。

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