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首页> 外文期刊>International Geology Review >Solute and gas geothermometry of geothermal wells: a geochemometrics study for evaluating the effectiveness of geothermometers to predict deep reservoir temperatures
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Solute and gas geothermometry of geothermal wells: a geochemometrics study for evaluating the effectiveness of geothermometers to predict deep reservoir temperatures

机译:地热井的溶质和气体地热法:评估地热仪预测深层储层温度有效性的地球化学计量学研究

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摘要

Deep reservoir temperatures of 10 important geothermal systems of the world were estimated by applying 13 solute (Na/K) and 21 gas geothermometers. The predicted temperatures were comprehensively evaluated and compared with measured bottom-hole temperatures using geochemometric techniques. The present study reveals (1) high prediction performances in most of the Na/K geothermometers for the majority of the geothermal fields with liquid-dominated reservoirs, whereas low prediction performances were indicated for the geothermal fields with vapour-dominated and high-temperature reservoirs; (2) the gas geothermometers, in comparison to Na/K, are more successful in predicting the subsurface temperatures in high-temperature geothermal systems; (3) the geothermal systems for which Na/K geothermometers have indicated a high prediction performance, the gas geothermometers have specified a low prediction performances, and vice versa; (4) both Na/K and gas geothermometers, generally, overestimated the reservoir temperatures for the majority of the low-enthalpy geothermal fields and underestimated for the majority of the high-enthalpy geothermal fields; (5) the reservoir temperature predictions of gas geothermometers have more scatter than those temperatures inferred from Na/K geothermometers; and (6) in general, Na/K geothermometers seem to be a more successful geochemical tool in predicting reliable reservoir temperatures than gas geothermometers.
机译:通过使用13个溶质(Na / K)和21个气体地热仪估算了世界上10个重要地热系统的深层储层温度。对预测温度进行了全面评估,并使用地球化学技术将其与测得的井底温度进行了比较。本研究揭示(1)在大多数Na / K地热仪中,对于大多数以液控为主的地热场,其预测性能较高,而对于以蒸气为主,高温为储层的地热场,则表示较低的预测性能。 ; (2)与Na / K相比,气体地热仪在预测高温地热系统的地下温度方面更为成功; (3)Na / K地热仪显示出较高的预测性能,而气体地热仪显示出较低的预测性能,反之亦然; (4)Na / K和气体地热仪通常会高估大多数低焓地热田的储层温度,而低估大多数高焓地热田的储层温度; (5)气体地热仪的储层温度预测值比从Na / K地热仪推断的温度值更分散。 (6)通常,Na / K地热仪比气体地热仪在预测可靠的储层温度方面似乎是更成功的地球化学工具。

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