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Modeling hydrofluorocarbon compounds as geothermal tracers

机译:模拟氢氟烃化合物作为地热示踪剂

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The Cove Fort-Sulphurdale geothermal resource, Utah (USA), produces from a shallow steam cap and a deeper liquid resource. In January 1999, a tracer test utilizing liquid and vapor-phase tracers was conducted to establish possible links between the injection and production wells. The quantity of tracers required for the test was estimated using the three-dimensional, multi-component, thermal reservoir simulator TETRAD. The simulations incorporated the phase behavior of the vapor-phase tracer, R-134a. Despite limited production data, well productivities, possible aquifer configurations and the total reservoir production were matched. The results showed that the predicted tracer return curves are sensitive to the positions of the discharge and recharge aquifers. The best match of the measured and predicted tracer concentrations was obtained when the recharge aquifer was placed to the east of the field and discharge occurred to the west.
机译:美国犹他州的Cove Fort-Sulphurdale地热资源来自浅层的蒸汽顶盖和较深的液体资源。 1999年1月,进行了使用液相和气相示踪剂的示踪剂测试,以建立注入井和生产井之间的可能联系。测试所需的示踪剂数量是使用三维多分量热库模拟器TETRAD估算的。该模拟结合了气相示踪剂R-134a的相态。尽管生产数据有限,但井的生产率,可能的含水层构造和总储层产量是匹配的。结果表明,预测的示踪剂返回曲线对放电和补给含水层的位置敏感。当补给蓄水层被放置在油田的东部而排放物发生在西部时,获得的示踪剂浓度与实测值和预测值的最佳匹配。

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