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Hole fluids for deep ice core drilling

机译:用于深冰芯钻孔的孔隙液

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摘要

This paper is based on the data published in research report of P. G. Talalay and N. S. Gundestrup; Hole fluids for deep ice core drilling : A review. Copenhagen University, Copenhagen, 1999,120p. In the practice of deep ice core drilling only three types of bore-hole fluids have been used : 1) petroleum oil products (fuels or solvents) containing densifier, 2) aqueous ethylene glycol or ethanol solutions, 3) n-butyl acetate. The main parameters of drilling fluids are 1) density and fluid top; 2) viscosity; 3) frost-resistance; 4) stability; 5) compatibility with polymers and metals; 6) volatility; 7) flammability; 8) ice and water solubility; 9) toxicological and environmental characteristics; 10) cost. The main properties of bore-hole fluids which have been used in practice for deep ice drilling as well as potential bore-hole fluids are described. The analyzing of the propertyu27s data showed that there are no ideal drilling fluids. All types of used and potential drilling fluids have their own advantages and disadvantages. Probably one of the most promising types of drilling fluid is low-temperature silicone oil. It is non-aggressive, inert, and non-toxic. The main problem of silicone oil use is the relatively high viscosity at negative temperatures that have influence on the travel time of the drill string and finally on the total time drilling. The final choice of the drilling fluid depends on the possibilities and the ways of solving of indicating problems and depends on the rational correlation between the cost of drilling fluid and other properties of the fluid.
机译:本文基于P. G. Talalay和N. S. Gundestrup发表的研究报告中的数据;用于深冰芯钻孔的孔液:综述。哥本哈根大学,哥本哈根,1999,120页。在深冰岩心钻探的实践中,仅使用了三种类型的钻孔流体:1)含有致密剂的石油产品(燃料或溶剂),2)乙二醇或乙醇水溶液,3)乙酸正丁酯。钻井液的主要参数是:1)密度和液顶。 2)粘度; 3)抗冻性; 4)稳定性; 5)与聚合物和金属的相容性; 6)波动性; 7)易燃性; 8)冰和水的溶解度; 9)毒理学和环境特征; 10)费用。描述了已在实践中用于深冰钻探的钻孔流体以及潜在的钻孔流体的主要特性。对性能数据的分析表明,没有理想的钻井液。所有类型的使用过的和潜在的钻井液都有自己的优点和缺点。低温硅油可能是最有前途的钻井液之一。它是无攻击性,惰性和无毒的。使用硅油的主要问题是在负温度下粘度较高,这会影响钻柱的行进时间,并最终影响总钻进时间。钻井液的最终选择取决于解决指示问题的可能性和方式,并取决于钻井液成本和该流体其他性质之间的合理关联。

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