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首页> 外文期刊>Journal of geophysics and engineering >Determination of formation temperatures from temperature logs in deep boreholes: comparison of three methods
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Determination of formation temperatures from temperature logs in deep boreholes: comparison of three methods

机译:从深孔温度测井确定地层温度:三种方法的比较

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The most important data on the thermal regime of the Earth's interior come from temperature measurements in deep boreholes. The drilling process greatly alters the temperature field of formations surrounding the wellbore. The temperature change is affected by many factors and the exact determination of formation temperature at any depth requires a certain length of shut-in time. In theory this shut-in time is infinitely long. There is, however, a practical limit to the time required for the difference in the temperature between the well wall and surrounding reservoir to become a negligible quantity. In this paper, we conducted a comparison of three methods of predicting the undisturbed formation temperatures from shut-in temperature logs in deep wells. Long-term temperature surveys in five wells were selected to estimate the formation temperatures and to compare measured and predicted transient formation temperatures. It was found that the best agreement is observed with values calculated by the 'three-point method' and measured during shut-in period transient temperatures.
机译:有关地球内部热力状况的最重要数据来自深井孔的温度测量。钻井过程极大地改变了井筒周围地层的温度场。温度变化受许多因素影响,在任何深度精确确定地层温度都需要一定的关闭时间。从理论上讲,这种关闭时间是无限长的。然而,对于使井壁与周围储层之间的温度差变为可忽略的量所需的时间存在实际限制。在本文中,我们对从深井中封闭温度测井预测未扰动地层温度的三种方法进行了比较。选择在五个井中进行长期温度调查以估计地层温度,并比较测得的和预测的瞬时地层温度。已经发现,与通过“三点法”计算出的值以及在关断期间的瞬态温度下测得的值具有最佳的一致性。

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