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Understanding of thermal-hydraulic instabilities and the mutual interactions at supercritical pressure

机译:了解热工水力不稳定性及其在超临界压力下的相互作用

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In the present work, a steady state and a simple transient models are integrated to simulate various thermal-hydraulic (TH) static and dynamic instabilities in a single vertical channel, subjected to time independent power, for supercritical fluid (SCF). The scheme of U.S. supercritical water reactor (SCWR) design is analyzed for different TH instabilities and the mutual interactions of such instabilities. An in-house steady state TH model, which solves a set of nonlinear coupled mass, momentum and energy conservation equations accounting for the pressure and enthalpy dependent thermodynamic equation of state, is implemented to find the solution at the initial equilibrium condition. The steady state model is then validated against the recently available experimental results. Next, the simple transient model is integrated with the steady state model to simulate Ledinegg excursion, pressure drop oscillations (PDOs), density wave oscillations (DWOs), and the mutual interactions of each other in presence as well as in absence of a surge tank at the upstream of the heated section. A number of simulations are carried out considering various typical pump (external) characteristic curves. Results provide the understanding what are the different operational criteria on which the Ledinegg excursion, PDOs and DWOs, or the interactions of the aforementioned TH instabilities will depend.
机译:在当前的工作中,将稳态和简单的瞬态模型集成在一起,以模拟超临界流体(SCF)在单个垂直通道中的多种热工(TH)静态和动态不稳定性,这些不稳定性会受到时间的影响。针对不同的TH不稳定性以及此类不稳定性的相互影响,分析了美国超临界水反应堆(SCWR)设计方案。为了解决初始平衡条件下的求解问题,实施了一个内部稳态TH模型,该模型求解了一组非线性耦合的质量,动量和能量守恒方程,其中考虑了压力和焓相关的热力学状态方程。然后针对最近可用的实验结果验证稳态模型。接下来,将简单的瞬态模型与稳态模型集成在一起,以模拟Ledinegg偏移,压降振荡(PDO),密度波振荡(DWO)以及存在或不存在调压罐时彼此的相互作用在加热段的上游。考虑到各种典型的泵(外部)特性曲线,进行了许多模拟。结果提供了对Ledinegg偏移,PDO和DWO或前述TH不稳定性相互作用的不同操作标准的理解。

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