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首页> 外文期刊>Journal of nuclear engineering and radiation science >Performance Modeling and Analysis of a Single-Shaft Closed-Cycle Gas Turbine Using Different Operational Control Strategy
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Performance Modeling and Analysis of a Single-Shaft Closed-Cycle Gas Turbine Using Different Operational Control Strategy

机译:单轴闭环燃气轮机使用不同操作控制策略的性能建模与分析

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摘要

In the last few years, one considerable factor for the viability and interest in the closed-cycle gas turbine (GT) systems for nuclear or conventional power plant application is its potential to maintain high cycle performance at varying operating conditions. However, for this potential to be realized, more competitive analysis and understanding of its control strategy are importantly required. In this paper, the iterative procedure for three independent control strategies of a 40 MW single-shaft intercooled-recuperated closed-cycle GT incorporated to a generation IV nuclear reactor is been analyzed and their performance at various operating conditions compared. The rationale behind this analysis was to explore different control strategies and to identify potential limitations using each independent control. The inventory control strategy offered a more viable option for high efficiency at changes in ambient and part-load operations, however, operational limitations in terms of size and pressure of inventory tank, rotational speed for which the centrifugal forces acting on the blade tips could become too high, hence would affect the mechanical integrity and compressor performance. The bypass control responds rapidly to load rejection in the event of loss of grid power. And more interestingly, the results showed the need for a mixed or combined control instead of a single independent technique, which is limited in practice due to operational limits.
机译:在过去几年中,核电厂或常规电厂应用的闭式循环燃气轮机(GT)系统的可行性和兴趣的一个重要因素是其在不同运行条件下保持高循环性能的潜力。然而,为了实现这一潜力,需要对其控制策略进行更多的竞争分析和理解。本文分析了第四代核反应堆40MW单轴中冷回热闭式循环燃气轮机三种独立控制策略的迭代过程,并比较了它们在不同运行条件下的性能。该分析的基本原理是探索不同的控制策略,并使用每个独立的控制确定潜在的限制。库存控制策略为在环境和部分负载运行变化时实现高效率提供了一个更可行的选择,然而,库存罐的尺寸和压力、作用在叶尖上的离心力可能过高的转速等方面存在运行限制,因此会影响机械完整性和压缩机性能。在电网断电的情况下,旁路控制快速响应甩负荷。更有趣的是,结果表明需要混合或组合控制,而不是单一的独立技术,因为操作限制,这种技术在实践中受到限制。

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