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首页> 外文期刊>Annals of Glaciology >The investigation and experience of using ESTISOL (TM) 240 and COASOL (TM) for ice-core drilling
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The investigation and experience of using ESTISOL (TM) 240 and COASOL (TM) for ice-core drilling

机译:使用ESTISOL(TM)240和COASOL(TM)进行冰芯钻孔的研究和经验

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摘要

Continuous good-quality deep ice cores provide excellent scientific data with which to reconstruct a past climate record for >800 ka. At depths starting from similar to 100 m using an electromechanical drill, a drilling liquid is essential for successful recovery of the very high-quality ice cores demanded by modern scientific analysis techniques (e.g. continuous flow analysis). Finding a suitable drill fluid for use at deep ice-coring drill sites is not an easy task. Temperatures vary greatly not just from site to site, but also at a site where the average mean temperature from surface to bedrock can vary from -55 degrees C to -2.75 degrees C. In the past 60 years, many fluids have been used, with varying degrees of success, but for various reasons are either unavailable, are now considered unsafe and dangerous or are too environmentally damaging to be permitted. Here we report on our pre-season investigation into possible candidate drill fluids, with specific information concerning ESTISOL (TM) 240 and COASOL (TM), the rationale behind the redesign of our drill successfully used at NorthGRIP, Greenland, and EPICA DML, Antarctica, the knock-on effect of those changes, and our field experience in Greenland at Flade lsblink in 2006 and at NEEM in 2009-10.
机译:连续不断的优质深层冰芯提供了出色的科学数据,可用于重建过去> 800 ka的气候记录。在使用机电钻头从大约100 m的深度开始时,钻井液对于成功回收现代科学分析技术(例如连续流分析)所要求的高质量冰芯至关重要。寻找适合在深冰取芯钻探现场使用的钻井液并非易事。温度不仅因地而异,而且因地表至基岩的平均平均温度在-55摄氏度至-2.75摄氏度之间变化的温度也很大。在过去60年中,使用了许多流体,不同程度的成功,但由于各种原因而无法获得,或者现在被认为是不安全和危险的,或者对环境的损害太大而无法允许。在这里,我们报告了对可能的候选钻井液的季前调查,并提供了有关ESTISOL(TM)240和COASOL(TM)的具体信息,以及重新设计在格陵兰的NorthGRIP和南极洲的EPICA DML成功使用的钻探的基本原理。 ,这些变化的连锁效应以及我们在格陵兰岛2006年在Flade lsblink和2009-10年在NEEM的现场经验。

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