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Achieving More Efficient and Reliable Operation of Geothermal Turbines by Using a Secondary Flash Steam Superheating System

机译:通过使用二次闪蒸蒸汽过热系统实现地热涡轮机的更高效,更可靠的运行

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Problems encountered in operation of saturated steam geothermal turbine units that stem from the specific features of a geothermal heat carrier are considered. A two-phase state, increased content of salts, and corrosiveness of geothermal working medium have a negative influence on the efficiency and reliability of the turbine’s first and last stages. Owing to high concentrations of impurities in the liquid phase, the first stages suffer from intense generation of deposits. The resulting decrease in the power output is due to both fouling of the flow path and significantly growing roughness of the turbine cascade blades. The flow of wet steam in the geothermal turbine flow path is accompanied by droplet impingement erosion of the last-stage blades and corrosion fatigue of the metal of rotor elements. In addition, the losses due to steam wetness in the flow path cause an essential decrease of the geothermal turbine efficiency. The article gives examples of erosioninduced damage inflicted to the last-stage rotor blades, corrosion fatigue of the metal of integrally-machined shroud elements, and deposits in the nozzle vane cascades of geothermal turbine stages. The article also presents the results from numerical investigations of the effect that the initial steam wetness has on the silicic acid concentration in the wet steam flow liquid phase in a 4.0 MW geothermal turbine’s stages. A method for achieving more efficient and reliable operation of the geothermal turbine low-pressure section by applying a secondary flash steam superheating system with the use of a hydrogen steam generator is proposed. The article presents a process arrangement for preparing secondary flash steam supplied to the geothermal turbine low-pressure section in which the flash steam is evaporated and superheated through the use of a hydrogen steam generator. The technical characteristics of the system for preparing secondary flash steam to be used in the intermediate inlet to the turbine were preliminarily assessed (taking the upgrading of the Mutnovsk geothermal power plant as an example), and it has been shown from this assessment that the wetness degree in the low-pressure section can be decreased down to its final value equal to 2.0%.
机译:考虑了在饱和蒸汽地热透平机组运行中遇到的问题,这些问题源于地热载热体的特定特征。两相状态,盐含量的增加以及地热工作介质的腐蚀性对涡轮机第一级和最后一级的效率和可靠性产生负面影响。由于液相中杂质的浓度很高,因此第一阶段会产生大量沉积物。功率输出的最终下降是由于流动路径的结垢和涡轮叶栅叶片粗糙度的显着增加。地热透平流动路径中湿蒸汽的流动伴随着末级叶片的液滴撞击侵蚀和转子元件金属的腐蚀疲劳。另外,由于流动路径中的蒸汽湿润引起的损失导致地热涡轮效率的显着降低。该文章提供了一些实例,这些实例包括腐蚀对末级转子叶片造成的损害,整体加工的护罩元素的金属的腐蚀疲劳以及地热涡轮级的喷嘴叶片叶栅中的沉积物。文章还提供了数值研究的结果,这些结果是初始蒸汽湿度对4.0 MW地热涡轮机级湿蒸汽流液相中硅酸浓度的影响。提出了一种方法,该方法通过应用二次闪蒸过热系统并使用氢气蒸汽发生器来实现地热透平低压段的更有效和可靠的运行。该文章提出了一种用于制备提供给地热涡轮低压段的二次闪蒸蒸汽的工艺装置,在该过程中,闪蒸蒸汽通过使用氢蒸汽发生器而被蒸发和过热。初步评估了用于涡轮中间入口的二次闪蒸蒸汽制备系统的技术特性(以穆特诺夫斯克地热发电厂的升级为例),从评估中可以看出,湿度低压段的最高温度可以降低到其最终值等于2.0%。

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