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Sensitivity analysis and dynamic modelling of the reinjection process in a binary cycle geothermal power plant of Larderello area

机译:Larderello地区二元循环地热发电厂再注射过程的敏感性分析与动态建模

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The surface equipment design for a binary cycle geothermal power plant including facilities required for the power cycle and the complete reinjection process of two-phase geothermal fluid (H_2O + non-condensable gases (NCGs)) in the Castelnuovo area of Larderello are modelled. The proposed scheme includes the configuration of closed-loop power plant, NCGs compression train and reinjection process at the wellhead. Steady-state and dynamic simulations are performed. The steady-state model is developed to find the correct operating solutions and conditions, while the dynamic model investigates the unsteady behaviour of the system. The study includes a sensitivity analysis of surface equipment design, demonstrating the effect of internal and external variables on the system performance, including power cycle, compression train and reinjection process. The maximum compressor power consumption (at 60 bar reinjection pressure) is 176 kW at 8% CO_2 mass fraction into the geothermal fluid. The unsteady system behaviour at startup and its response to step-changes of flow stream condition is assessed: it is found that the average response-time is about 20 min. Also, the system requires a drain pressure higher than the saturation level for effective reinjection. A new Antoine - based correlation for water-CO_2 mixture is proposed for geothermal applications.
机译:模型,包括电力循环和电力循环所需的设施的二元循环地热发电厂的表面设备设计,以及在乐德罗的Castelnuovo面积中的两相地热流体(H_2O +不可冷凝气体(NCGS)的完全再调速过程。所提出的方案包括在井口处的闭环电厂,NCGS压缩列车和再注入过程的配置。执行稳态和动态模拟。开发稳态模型以找到正确的操作解决方案和条件,而动态模型调查了系统的不稳定行为。该研究包括对表面设备设计的灵敏度分析,展示了内部和外部变量对系统性能的影响,包括电源循环,压缩列车和再注入过程。最大压缩机功耗(60巴再注压力)为8%CO_2质量分数的176kW,进入地热流体。评估启动时的不稳定系统行为及其对流量流条件的步骤变化的响应:发现平均响应时间约为20分钟。此外,该系统需要高于饱和水平的漏极压力,以便有效再调味。提出了一种新的水 - CO_2混合物相关性,用于地热应用。

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