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Influence of drilling fluid temperature on borehole shrinkage during drilling operation in cold regions

机译:钻井液温度对寒冷地区钻井运行期间钻孔收缩的影响

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摘要

Frozen soil is a porous elastic-plastic-viscous material with temperature-sensitive properties. Borehole shrinkage occurs due to the plasticity and creep of frozen soil that ensues during drilling operations in cold regions. Based on the change of mechanical properties of frozen soil during the heat transfer process that occurs between the drilling fluid and the formation, a heat-fluid-solid coupling model is established in this paper to analyze borehole shrinkage behaviors in frozen soil. The results show that during drilling operations, the plastic and creep deformation of frozen soil will result in borehole shrinkage. When the borehole is drilled, a certain amount of plastic deformation will occur due to stress concentration. As drilling operations continue, both plastic and creep deformation gradually accumulate. The borehole shrinkage is dominated by the initial temperature of the formation, and the higher the formation temperature, the greater the shrinkage. At the same formation temperature, the initial borehole shrinkage decreases with increasing temperature of the drilling fluid, and the final shrinkage increases nonlinearly with increasing temperature. The drilling fluid temperature should be close to 0 degrees C when the formation temperature is high to reduce the drilling time. When the formation temperature is low, cold drilling fluid should be used to maintain borehole stability. This study provides a theoretical basis for the selection of drilling fluid temperatures during drilling operations in cold regions.
机译:冷冻土是一种多孔弹塑性粘性材料,具有温度敏感性。由于冷冻区域钻井作业期间,由于冷冻土壤的可塑性和蠕变而发生钻孔收缩。基于在钻井液与地层之间发生的传热过程中冻土的机械性能的改变,在本文中建立了热流体固偶联模型,以分析冷冻土壤中的钻孔收缩行为。结果表明,在钻井作业期间,冷冻土壤的塑料和蠕变变形将导致钻孔收缩。当钻孔时,由于应力浓度,将发生一定量的塑性变形。由于钻井操作继续,塑料和蠕变变形都逐渐积聚。钻孔收缩率是由地层的初始温度支配,形成温度越高,收缩越大。在相同的形成温度下,初始钻孔收缩随着钻井液的温度的增加而降低,并且最终收缩率随温度的增加而增加。当形成温度高时,钻井液温度应接近0℃以减少钻井时间。当形成温度低时,应使用冷钻液来保持钻孔稳定性。本研究为在寒冷地区钻井操作期间选择钻井液温度提供了理论依据。

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