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首页> 外文期刊>Journal of geophysics and engineering >A new look at the statistical assessment of approximate and rigorous methods for the estimation of stabilized formation temperatures in geothermal and petroleum wells
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A new look at the statistical assessment of approximate and rigorous methods for the estimation of stabilized formation temperatures in geothermal and petroleum wells

机译:重新评估地热和石油井中稳定地层温度的近似和严格方法的统计评估

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摘要

Approximate and rigorous solutions of seven heat transfer models were statistically examined, for the first time, to estimate stabilized formation temperatures (SFT) of geothermal and petroleum boreholes. Constant linear and cylindrical heat source models were used to describe the heat flow (either conductive or conductive/convective) involved during a borehole drilling. A comprehensive statistical assessment of the major error sources associated with the use of these models was carried out. The mathematical methods (based on approximate and rigorous solutions of heat transfer models) were thoroughly examined by using four statistical analyses: (i) the use of linear and quadratic regression models to infer the SFT; (ii) the application of statistical tests of linearity to evaluate the actual relationship between bottom-hole temperatures and time function data for each selected method; (iii) the comparative analysis of SFT estimates between the approximate and rigorous predictions of each analytical method using a β ratio parameter to evaluate the similarity of both solutions, and (iv) the evaluation of accuracy in each method using statistical tests of significance, and deviation percentages between 'true' formation temperatures and SFT estimates (predicted from approximate and rigorous solutions). The present study also enabled us to determine the sensitivity parameters that should be considered for a reliable calculation of SFT, as well as to define the main physical and mathematical constraints where the approximate and rigorous methods could provide consistent SFT estimates.
机译:首次统计检验了七个传热模型的近似解和严格解,以估计地热和石油钻孔的稳定地层温度(SFT)。恒定的线性和圆柱形热源模型用于描述钻孔过程中涉及的热流(传导性或传导性/对流性)。对与使用这些模型相关的主要错误源进行了全面的统计评估。数学方法(基于传热模型的近似和严格解)通过使用四个统计分析进行了彻底检查:(i)使用线性和二次回归模型推断SFT; (ii)应用线性统计检验来评估每种选定方法的井底温度与时间函数数据之间的实际关系; (iii)在每种分析方法的近似和严格预测之间,使用β比率参数对SFT估计值进行比较分析,以评估两种解决方案的相似性;以及(iv)在使用显着性统计检验的情况下,评估每种方法的准确性,以及“真实”地层温度与SFT估算值之间的偏差百分比(根据近似和严格的解决方案进行预测)。本研究还使我们能够确定为进行SFT的可靠计算而应考虑的敏感度参数,以及定义主要物理和数学约束,其中近似和严格的方法可以提供一致的SFT估计值。

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