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Experimental investigation and numerical modelling of transient two-phase flow in a geysering geothermal well

机译:间歇泉地热井瞬态两相流的实验研究与数值模拟

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摘要

Measurements of the periodic transient flow in a vertical geysering geothermal well are presented. The 70-m deep, 0.1-m internal diameter well taps a hot (about 87℃) water aquifer rich in dissolved carbon dioxide. Transient pressures measured at various depths show the various flow regimes that develop in the borehole and demonstrate that the periodic flow is caused by the degassing of the water flowing up the well. A one-dimensional numerical model of the flow has been developed. The computed results exhibit the main characteristics of the test measurements. This agreement between model and measurements is considered to support both the numerical model and the conceptual model of the system deduced from the measurements.
机译:介绍了垂直间歇泉地热井中周期性瞬变流量的测量。深度为70米,内径为0.1米的井用富含溶解二氧化碳的热水(约87℃)自来水。在不同深度处测量的瞬态压力显示出在井眼中形成的各种流动状态,并表明周期性流动是由向上流动的井水脱气引起的。已经开发出一维流动的数值模型。计算结果显示出测试测量的主要特征。模型与测量值之间的这种一致性被认为可以支持从测量值推导出的系统的数值模型和概念模型。

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