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首页> 外文期刊>Journal of nuclear engineering and radiation science >Gas Turbine Arekret-Cycle Simulation Modeling for Training and Educational Purposes
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Gas Turbine Arekret-Cycle Simulation Modeling for Training and Educational Purposes

机译:用于培训和教育目的的燃气轮机循环仿真建模

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This paper presents the modeling approach of a multipurpose simulation tool called gas turbine Arekret-cycle simulation (GT-ACYSS); which can be utilized for the simulation of steady-state and pseudo transient performance of closed-cycle gas turbine plants. The tool analyzes the design point performance as a function of component design and performance map characteristics predicted based on multifluid map scaling technique. The off-design point is analyzed as a function of design point performance, plant control settings, and a wide array of other off-design conditions. GT-ACYSS can be a useful educational tool since it allows the student to monitor gas path properties throughout the cycle without laborious calculations. It allows the user to have flexibility in the selection of four different working fluids, and the ability to simulate various single-shaft closed-cycle configurations, as well as the ability to carry out preliminary component sizing of the plant. The modeling approach described in this paper has been verified with case studies and the trends shown appeared to be reasonable when compared with reference data in the open literature, hence, can be utilized to perform independent analyses of any referenced single-shaft closed-cycle gas turbine plants. The results of case studies presented herein demonstrated that the multifluid scaling method of components and the algorithm of the steady-state analysis were in good agreement for predicting cycle performance parameters (such as efficiency and output power) with mean deviations from referenced plant data ranging between 0.1% and 1% over wide array of operations.
机译:本文介绍了一种称为燃气轮机静脉循环仿真(GT-Acyss)的多功能仿真工具的建模方法;这可以用于模拟闭环燃气轮机厂的稳态和伪瞬态性能。该工具分析了设计点性能作为基于多流体映射缩放技术预测的组件设计和性能图特性的函数。分析了非设计点作为设计点性能,工厂控制设置和各种其他非设计条件的函数。 GT-Acyss可以是一个有用的教育工具,因为它允许学生在整个循环中监控天然气路径属性而没有费力计算。它允许用户在选择四种不同的工作流体方面具有灵活性,以及​​模拟各种单轴闭环配置的能力,以及执行植物的初步组件尺寸的能力。本文中描述的建模方法已经用案例研究验证,并且在开放文献中的参考数据比较时,所示的趋势似乎是合理的,因此,可以利用来执行任何引用的单轴闭环气体的独立分析涡轮厂。本文呈现的案例研究结果表明,稳态分析的多功能缩放方法和稳态分析的算法对于预测周期性能参数(例如效率和输出功率),具有与来自参考工厂数据之间的平均偏差的平均偏差在各种操作中0.1%和1%。

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