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Exergetic Evaluation of a Rankine Cycle with Regeneration: Effect of Turbine Inlet Temperature and Source Temperature

机译:具有再生的朗肯循环的官方评估:涡轮机入口温度和源极温度的影响

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摘要

The Rankine cycle is a thermodynamic cycle widely used in power plants, specifically in steam power plants, due to its great importance in the industry. It has also been studied in recent years in search of parameters that can optimize the cycle by reducing losses and thus increase efficiency, so that improvements have been made in the process such as overheating of steam at the turbine inlet, and even regeneration of water at the boiler inlet. In this work a process of optimization of a Rankine cycle was presented by complementing it with an open feed water heater which not only improves the efficiency of the cycle, but also provides a convenient means of de-aeration of the feed water to prevent corrosion in the boiler, in which it was carried out under the assumption of a stationary flow, and without significant changes in the kinetic and potential energy, that is, assuming an ideal process, all this with the aim of obtaining the highest thermal efficiency and the lowest exergetic losses in the cycle, carrying out several case studies with the assistance of Unisim with temperature variations at the turbine inlet and at the source to observe how this affects the exergetic efficiency and exergy destroyed in the turbine and it was concluded that this is reflected in the production of mechanical energy useful for creating electrical energy because a variation in these parameters could cause job losses in the turbine and decrease in the exergetic efficiency of the system which in turn would lead to a decrease in the network of the system.
机译:朗肯循环是一种热力学周期,广泛用于发电厂,专门在蒸汽发电厂,由于其在行业中非常重要。近年来还研究了可以通过减少损耗来优化循环的参数,从而提高效率,从而在涡轮机入口处的蒸汽过热等过程中进行了改进,甚至在涡轮机入口的过热等过程中进行了优化的参数。锅炉入口。在这作用中,通过将其与开放式进料热水器补充,提出了一种优化朗肯循环的过程,这不仅提高了循环的效率,而且还提供了一种方便的进给水的方法,以防止腐蚀锅炉,其中它是在静止流动的假设下进行的,并且在动力学和潜在能量的显着变化,这是假设理想的过程,所有这一切的目的是获得最高热效率和最低的循环中的前进损失,在Unisim的帮助下进行几个案例研究,在涡轮机入口处的温度变化以及源头观察到这一切影响在涡轮机中的锻炼效率和暴风,并得出结论,这是反映的生产用于产生电能的机械能源,因为这些参数的变化可能导致涡轮机和减少作业损失E在系统的前进效率中,又将导致系统网络减少。

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