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首页> 外文期刊>Journal of nuclear engineering and radiation science >Analyses of a High Pressure Ratio Intercooled Direct Brayton Helium Gas Turbine Cycle for Generation IV Reactor Power Plants
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Analyses of a High Pressure Ratio Intercooled Direct Brayton Helium Gas Turbine Cycle for Generation IV Reactor Power Plants

机译:IV型反应器发电厂的高压比直接布雷顿氦气汽轮机循环分析

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摘要

The intercooled cycle (IC) as an alternative to the simple cycle recuperated (SCR) and intercooled cycle recuperated (ICR) is yet to be fully analyzed for the purpose of assessing its viability for utilization within Generation IV nuclear power plants (NPPs). Although the benefits are not explicitly obvious, it offers the advantage of a very high overall pressure ratio (OPR) in the absence of a recuperator. Thus, the main objective of this study is to analyze various pressure ratio configurations, the effects of varying pressure ratio including sensitivity analyses of component efficiencies, ambient temperature, component losses and pressure losses on cycle efficiency, and specific work of the IC, including comparison with the SCR and ICR. Results of comparison between the IC and the SCR and ICR derived that the cycle efficiencies are greater than the IC by ~4% (SCR) and ~6% (ICR), respectively. However, the pressure losses for IC are lower when compared with the SCR and ICR. Nonetheless, heat from the turbine exit temperature of the IC can be used in a processing plant including the possibility of higher turbine entry temperatures (TETs) to significantly increase the cycle efficiency in a bid to justify the business case. The analyses intend to bring to attention an alternative to current cycle configurations for the gas-cooled fast reactors (GFRs) and very-high-temperature reactors (VHTRs), where helium is the coolant. The findings are summarized by evaluating the chosen pressure ratio configurations against critical parameters and detailed comparison with the SCR and ICR.
机译:中冷循环(IC)作为简单循环回热循环(SCR)和中冷循环回热循环(ICR)的替代方案,尚待全面分析,以评估其在第四代核电厂(NPP)中的使用可行性。虽然其好处并不明显,但在没有回热器的情况下,它具有非常高的总压比(OPR)的优势。因此,本研究的主要目的是分析各种压力比配置、不同压力比的影响,包括组件效率、环境温度、组件损耗和压力损耗对循环效率的敏感性分析,以及IC的具体工作,包括与SCR和ICR的比较。IC与SCR和ICR的比较结果表明,循环效率分别比IC高约4%(SCR)和约6%(ICR)。然而,与SCR和ICR相比,IC的压力损失更低。尽管如此,IC涡轮机出口温度产生的热量可用于加工厂,包括更高涡轮机入口温度(TET)的可能性,以显著提高循环效率,从而证明商业案例的合理性。这些分析旨在引起人们对气冷快堆(GFR)和超高温反应堆(VHTR)当前循环配置的注意,其中氦气是冷却剂。通过根据关键参数评估所选压力比配置,并与SCR和ICR进行详细比较,总结了研究结果。

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