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Deriving geotherrnal parameters from bottom-hole temperatures in Wyoming

机译:从怀俄明州的井底温度推导出地热参数

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摘要

This article describes a method to determine geotherrnal gradients and formation temperatures using bottom-hole temperatures (BHTs) from wireline-log headers and then tests the method by applying it to analyses from more traditional sources. Bottom-hole temperatures, depths, and times since circulation ended were collected from at least one well in every township that had been drilled for petroleum exploration in the state of Wyoming. Using approximately 3500 BHTs collected from almost 2000 wells, equations were developed for average formation temperatures and geotherrnal gradients across the state. A method of correcting the average data to true formation temperatures in each individual well was also developed. The geotherrnal temperatures so derived very closely match temperatures from production BHTs that are the normal industry standard for formation temperatures and suggest that BHT information is much more accurate than commonly thought. The use of BHT measurements to compute temperature gradients was also developed. The effects upon formation temperatures of common data recording errors; of vertical circulation of groundwater, especially above 1700-m (5577-ft) depth; and of lateral groundwater circulation through deep aquifers are documented. The methods developed offer promising avenues for research in the areas of hydrogeology, geotherrnal exploration, determining formation temperatures, and heat flow.
机译:本文介绍了一种方法,该方法使用来自电缆测井头的井底温度(BHT)确定地热梯度和地层温度,然后将其应用于来自更多传统来源的分析中进行测试。在怀俄明州的每个城镇中,至少从一口井中收集了用于石油勘探的井底温度,深度和循环结束以来的时间。利用从近2000口井中收集到的约3500 BHT,开发了全州平均地层温度和地热梯度的方程式。还开发了一种将平均数据校正为每个井中真实地层温度的方法。这样得出的地热温度与生产BHT的温度非常匹配,而BHT是地层温度的正常工业标准,这表明BHT信息比通常认为的要准确得多。还开发了使用BHT测量来计算温度梯度的方法。常见数据记录错误对地层温度的影响;地下水的垂直循环,尤其是在1700米(5577英尺)以上的深度;以及通过深层含水层进行的地下水侧向循环的记录。开发的方法为水文地质,地热勘探,确定地层温度和热流领域的研究提供了有希望的途径。

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