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Method for selecting casing diameters in wells producing low-enthalpy geothermal waters containing dissolved carbon dioxide

机译:在生产含溶解二氧化碳的低焓地热水中选择套管直径的方法

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摘要

Most low-enthalpy geothermal waters contain dissolved gases (e.g., CO_2, H_2S, and CH_4). In artesian geothermal wells, the absolute pressure of the water flowing towards the surface may drop below the bubble point of the dissolved gases, resulting in their gradual release and the appearance of two-phase flow. To optimize flow conditions we must keep frictional losses to a minimum and prevent undesirable flow regimes from occurring in the well. A mechanistic model has been developed for upward two-phase flow in vertical wells, based on existing correlations for the various flow regimes. Computations have been performed using data measured in wells at the Therma-Nigrita geothermal field, Greece. The methodology presented here allows us to study the effects of changes in well casing diameter on fluid production rate and flow stability within the well, parameters that have to be considered when designing geothermal wells for further exploitation and field development.
机译:大多数低焓地热水含有溶解气体(例如,CO_2,H_2S和CH_4)。在自流地热井中,流向地表的水的绝对压力可能会下降到溶解气体的泡点以下,从而导致其逐渐释放并出现两相流。为了优化流动条件,我们必须将摩擦损失降到最低,并防止井中发生不良的流动状态。基于各种流态的现有相关性,已经开发了一种用于垂直井中向上两相流的力学模型。已经使用希腊Therma-Nigrita地热田的井中测得的数据进行了计算。这里介绍的方法使我们能够研究套管直径的变化对井中流体生产率和流动稳定性的影响,这些参数是设计地热井以进一步开发和开发时必须考虑的参数。

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