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Linear and Nonlinear Stability Analysis of a Supercritical Natural Circulation Loop

机译:超临界自然循环回路的线性和非线性稳定性分析

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Supercritical water (SCW) has excellent heat transfer characteristics as a coolant for nuclear reactors. Besides it results in high thermal efficiency of the plant. However, the flow can experience instabilities in supercritical water cooled reactors, as the density change is very large for the supercritical fluids. A computer code SUCLIN has been developed employing supercritical water properties to carry out the steady-state and linear stability analysis of a SCW natural circulation loop (SCWNCL). The conservation equations of mass, momentum, and energy have been linearized by imposing small perturbation inflow rate, enthalpy, pressure, and specific volume. The equations have been solved analytically to generate the characteristic equation. The roots of the equation determine the stability of the system. The code has been benchmarked against published results. Then the code has been extensively used for studying the effect of diameter, heater inlet temperature, and pressure on steady-state and stability behavior of a SCWNCL. A separate computer code, NOLSTA, has been developed, which investigates stability characteristics of supercritical natural circulation loop using nonlinear analysis. The conservation equations of mass, momentum, and energy in transient form were solved numerically using finite volume method. The stable, unstable, and neutrally stable points were identified by examining the amplitude of flow and temperature oscillations with time for a given set of operating conditions. The stability behavior of loop, predicted using nonlinear analysis has been compared with that obtained from linear analysis. The results show that the stability maps obtained by the two methods agree qualitatively. The present paper describes the linear and nonlinear stability analysis models and the results obtained in detail.
机译:超临界水(SCW)作为核反应堆的冷却剂具有出色的传热特性。此外,它还可以提高设备的热效率。但是,由于超临界流体的密度变化非常大,因此在超临界水冷反应堆中流动可能会不稳定。已经开发出计算机代码SUCLIN,该计算机代码使用超临界水特性来进行SCW自然循环回路(SCWNCL)的稳态和线性稳定性分析。质量,动量和能量的守恒方程已通过施加较小的扰动流入量,焓,压力和比容而线性化。该方程已通过解析求解,以生成特征方程。方程的根决定了系统的稳定性。该代码已针对发布的结果进行了基准测试。然后,该代码已被广泛用于研究直径,加热器入口温度和压力对SCWNCL的稳态和稳定性行为的影响。已开发出单独的计算机代码NOLSTA,该代码使用非线性分析研究超临界自然循环回路的稳定性特征。利用有限体积法数值求解了瞬态形式的质量,动量和能量守恒方程。对于给定的一组工作条件,通过检查随时间变化的流量和温度振荡幅度,可以确定稳定点,不稳定点和中性点。将使用非线性分析预测的回路稳定性与通过线性分析获得的稳定性进行了比较。结果表明,两种方法得到的稳定性图在质量上吻合。本文描述了线性和非线性稳定性分析模型以及获得的详细结果。

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