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首页> 外文期刊>International Journal of Thermal Sciences >Time of refreezing of surrounding the wellbore thawed formations
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Time of refreezing of surrounding the wellbore thawed formations

机译:围绕井筒解冻的地层欣喜的时间

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摘要

Because deep wells in permafrost areas are usually drilled with a warm mud, there is some unknown degree of formation thawing around the wells. The warm mud alters the temperature field and as a result thaws the permafrost. To determine the static temperature of the formation and permafrost thickness, one must wait for some period after completion of drilling before conducting temperature logs. The duration of the refreezing of the layer thawed during drilling strongly depends on the natural temperature of formation; therefore, the rocks at the bottom of the permafrost refreeze very slowly. A lengthy restoration period of up to ten years or more is required to determine the temperature and thickness of permafrost with a sufficient accuracy. In this study, we present a new method of estimation of the time of refreezing of thawed formations (surrounding the borehole) by utilizing temperature logs. It also shown that the same basic equation (modified Homer plot) can be used for predicting the formation temperature. To our best knowledge, this study is the first effort to determine the duration of the refreezing period. The physical basis of this approach consists of non-conventional utilizing of three temperature observations in borehole after the freezeback completion. To demonstrate the applicability of the new method we present six examples: three field cases, one laboratory experiment, and two cases of numerical modelling. (c) 2017 Elsevier Masson SAS. All rights reserved.
机译:由于永久冻土区域的深井通常用温暖的泥浆钻,因此在井周围有一些未知的形成程度。温泥浆改变温度场,结果解冻了永久冻土。为了确定形成和永久冻土厚度的静电温度,必须在进行温度日志之前等待钻孔后的某个时段。在钻井期间解冻的层的泄漏的持续时间依赖于形成的自然温度;因此,岩石在永久冻土的底部更加缓慢地冷静下来。需要长达十年或更长时间以上的冗长恢复期,以确定具有足够精度的永久冻土的温度和厚度。在这项研究中,我们通过利用温度日志提出了一种估计解冻形成(围绕钻孔)的时间的新方法。它还表明,相同的基本方程(修饰的Homer Plot)可用于预测地层温度。为了我们的最佳知识,这项研究是第一次确定泄漏期间的持续时间。这种方法的物理基础包括在自助回填后的钻孔中的三种温度观察中的非常规利用。为了证明我们提供的新方法的适用性六个例子:三个现场案例,一个实验室实验和两个数值模拟的情况。 (c)2017年Elsevier Masson SAS。版权所有。

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