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首页> 外文期刊>Progress in Nuclear Energy >DYNAMICS MODELING AND STABILITY ANALYSIS OF A FLUIDIZED BED NUCLEAR REACTOR
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DYNAMICS MODELING AND STABILITY ANALYSIS OF A FLUIDIZED BED NUCLEAR REACTOR

机译:流化床核反应器的动力学建模与稳定性分析

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A theoretical model describing the coupling of neutronics, thermohydraulics and fluidization in a fluidized bed nuclear reactor is presented. The stability of the system is investigated by linearizing and perturbing the system around its equilibrium points and identifying the root loci of the system. It is found that within the operational range, the eigenvalues are located in the negative part of the phase plane, implying linear stability. Simulations of transient conditions are performed, viz. a hypothetical startup transient and a quasistatic transient related to noise resulting from stochastic movements of the fuel particles. These simulations show that although the total power of the reactor may reach high values, the fuel temperature is well below safety limits at all times.
机译:建立了描述流化床核反应堆中中子学,热工水力和流化耦合的理论模型。通过线性化和扰动系统平衡点周围的系统并确定系统的根基因座,可以研究系统的稳定性。发现在工作范围内,特征值位于相平面的负部分,这意味着线性稳定性。进行瞬态条件的模拟,即。与燃料颗粒的随机运动产生的噪声有关的假设启动瞬态和准静态瞬态。这些模拟表明,尽管反应堆的总功率可能达到很高的值,但燃料温度始终低于安全极限。

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