基于极地科学钻探冰切割断裂力学特征的力学建模研究

Xinyuan Lv, Zhihao Cui, Ting Wang, Yumin Wen, An Liu, Rusheng Wang
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引用次数: 0

摘要

摘要极地地区的科学钻探在获取冰芯和利用冰芯了解气候变化、研究极地冰盖的动态及其对全球环境变化(海平面、洋流循环、大气环流等)的影响方面发挥着至关重要的作用。机械旋转切割是一种广泛使用的钻探方法,通过驱动切割器旋转来切割和钻穿冰层。为了合理设计冰芯钻探系统,提高冰芯钻探效率,确保钻探过程顺利进行,有必要对冰的脆性断裂行为和力学模型进行深入研究,分析影响切削力的因素和具体机理(切刀角度、钻头转速、切削深度)。因此,本文观察了冰切割过程,分析了冰切割过程的断裂力学特征,将冰屑的形成过程分为三个阶段,并根据观察结果建立了切削力数学模型。论文描述了冰破坏的损伤条件,指出了影响切削力的因素和具体规律。此外,还测试了各种实验条件下产生的切削力。根据指定的切削力实时变化曲线,分析了切削和钻孔过程中的切削力特征。在与平均切削力结果对比的基础上,得出了各种参数对切削力的影响机制。这证明了切削力数学模型的正确性,为极地冰切割和钻孔过程中切削力的计算提供了理论参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research into mechanical modeling based on characteristics of the fracture mechanics of ice cutting for scientific drilling in polar regions
Abstract. Scientific drilling in polar regions plays a crucial role in obtaining ice cores and using them to understand climate change and to study the dynamics of polar ice sheets and their impact on global environmental changes (sea level, ocean current cycle, atmospheric circulation, etc.). Mechanical rotary cutting is a widely used drilling method that drives the cutter to rotate to cut and drill through ice layers. It is necessary to conduct in-depth research on the brittle fracture behavior of ice and mechanical model and to analyze the factors and specific mechanisms (cutter's angle, rotation speed of the drill bit, and cutting depth) affecting cutting force for the rational design of ice core drill systems, improving the efficiency of ice core drilling and ensuring the drilling process runs smoothly. Therefore, in this paper, the process of ice cutting was observed, the fracture mechanics characteristics of the ice cutting process were analyzed, the formation process of ice chips was divided into three stages, and a mathematical model for the cutting force was established based on the observation results. The paper describes the damage conditions of ice failure and points out the factors and specific laws influencing cutting force. Furthermore, the cutting force generated under various experimental conditions was tested. Based on specified real-time variation curves of cutting force, the characteristics of cutting force were analyzed during the cutting and drilling process. Based on comparison to results of the average cutting force, the influence mechanism of various parameters acting on the cutting force was obtained. This proves the correctness of the mathematical model of the cutting force and provides a theoretical reference for the calculation of the cutting force during ice cutting and drilling in polar regions.
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