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Analysis of the unstable behaviour of a single-phase natural circulation loop with one-dimensional and computational fluid-dynamic models

机译:一维和计算流体动力学模型分析单相自然循环回路的不稳定行为

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This paper discusses the results obtained using one-dimensional and three-dimensional computational fluid-dynamic codes for the prediction of the dynamic behaviour observed in experiments carried out in a single-phase natural circulation apparatus. The loop is made of glass and is equipped with vertical and horizontal heaters and coolers that can be separately operated, thus obtaining different working configurations. An in-house program, capable of linear and non-linear stability analysis of one-dimensional loops, with arbitrary configurations of heat sources and sinks, and a transient thermal-hydraulics system code were adopted for the purpose of highlighting capabilities and limitations of one-dimensional models in predicting the involved phenomena. Both linear stability maps and transient flow evolutions have been calculated by the programs, obtaining information on both the linear and the non-linear dynamic behaviour of the addressed system, as predicted by one-dimensional, cross-section averaged balance equations. A computational fluid-dynamics code has been also adopted for simulating the system dynamics in the different loop configurations. In particular, the CFD code was effective in showing the origin of pulsating instabilities observed with horizontal heater and cooler, which could in no way be predicted by the one-dimensional models.
机译:本文讨论使用一维和三维计算流体动力学代码获得的结果,以预测在单相自然循环装置中进行的实验中观察到的动力学行为。回路由玻璃制成,并配备可分别操作的垂直和水平加热器和冷却器,从而获得不同的工作配置。为了突出一个机器人的能力和局限性,采用了一个内部程序,该程序能够对一维回路进行线性和非线性稳定性分析,并具有任意配置的热源和散热器,以及一个瞬态热工液压系统代码。预测所涉及现象的三维模型。程序已计算了线性稳定性图和瞬态流动演化,并获得了所寻址系统的线性和非线性动态行为的信息,如一维截面平均平衡方程所预测的那样。还采用了计算流体动力学代码来模拟不同回路配置中的系统动力学。特别是,CFD代码有效地显示了用水平加热器和冷却器观察到的脉动不稳定性的根源,而一维模型则无法预测这种不稳定性。

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