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首页> 外文期刊>Heat Transfer Engineering >Steady-State Behavior of Natural Circulation Loops Operating With Supercritical Fluids for Open and Closed Loop Boundary Conditions
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Steady-State Behavior of Natural Circulation Loops Operating With Supercritical Fluids for Open and Closed Loop Boundary Conditions

机译:在开环和闭环边界条件下使用超临界流体运行的自然循环回路的稳态行为

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摘要

Supercritical water (SCW) exhibits excellent heat transfer characteristics and a high volumetric expansion coefficient (hence high mass flow rates in natural circulation systems) near the critical temperature. SCW is being considered as a coolant in some advanced nuclear reactor designs on account of its potential to offer high thermal efficiency, compact size, and elimination of steam generator, separator, and dryer, making it economically competitive. The elimination of phase change results in elimination of the critical heat flux phenomenon. Cooling a reactor at full power with natural instead of forced circulation is generally considered an enhancement of passive safety. In view of this, it is essential to study natural circulation behavior at supercritical conditions. Carbon dioxide can be considered to be a good simulant of water for natural circulation at supercritical conditions, since the density and viscosity variation of carbon dioxide follows a curve parallel to that of water at supercritical conditions. Hence, experiments were conducted in a closed supercritical pressure natural circulation loop (SPNCL) with supercritical carbon dioxide as working fluid. A nonlinear stability analysis code (NOLSTA) has been developed to carry out steady-state and stability analysis of open and closed loop natural circulation at supercritical conditions. The code has been validated for steady-state predictions with experimental data available in open literature and experiments conducted in SPNCL.
机译:超临界水(SCW)在临界温度附近具有出色的传热特性和高体积膨胀系数(因此在自然循环系统中具有高质量流量)。由于SCW具有提供高热效率,紧凑的尺寸以及无需蒸汽发生器,分离器和干燥器的潜力,因此在某些先进的核反应堆设计中被视为冷却剂。相变的消除导致临界热通量现象的消除。通常认为以自然功率而非强制循环全功率冷却反应堆可增强被动安全性。有鉴于此,研究超临界条件下的自然循环行为至关重要。二氧化碳可以被认为是超临界条件下自然循环水的良好模拟物,因为二氧化碳的密度和粘度变化遵循与超临界条件下的水平行的曲线。因此,在以超临界二氧化碳为工作流体的封闭超临界压力自然循环回路(SPNCL)中进行了实验。已经开发了非线性稳定性分析代码(NOLSTA),以在超临界条件下进行开环和闭环自然循环的稳态和稳定性分析。该代码已通过公开文献中提供的实验数据以及在SPNCL中进行的实验进行了稳态预测验证。

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