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Analysis of a BWR turbine trip experiment by entire plant simulation with spatial kinetics

机译:带有空间动力学的全厂模拟对BWR汽轮机跳闸实验的分析

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An analysis of a boiling water reactor turbine trip was performed with the THYDE-NEU code. In spatial kinetics, reactivity was not used since the three-dimensional transient diffusion equation was solved with the implicit direct integration method. The plant was treated as a closed coolant system, and hence, it was necessary to cope with thermal-hydraulic behaviors at pressures as low as the atmospheric pressure. At low pressures, nonlinearity of the thermal-hydraulic equation is enhanced, and hence, a thermal nonequilibrium model is required. To satisfy the measured initial pressure distribution within the reactor, it was necessary to have the moisture separator model and to account for a reversible pressure drop at a junction with a flow area change. Among the parameters in THYDE-NEU is gamma in the thermal nonequilibrium model in addition to C-1 and C-2 regarding the manner in which to express the coolant density used in the table look-up of cross sections. For a pair of C-1 and C-2, it is possible to find parametrically a value of gamma, namely, gamma(C), so that THYDE-NEU can reproduce the experimental fact that the core-averaged local power range monitor output R-APRM reached 0.95 at 0.63 s to generate a scram signal. One of the calculations with gamma(C) was compared with the experiment. It was shown that the spatial kinetics results are sensitive to the temporal behavior of the bypass valve opening. Among the assumptions in use, those to be scrutinized before further performing sensitivity calculations were indicated.
机译:使用THYDE-NEU代码对沸水反应堆涡轮行程进行了分析。在空间动力学中,由于用隐式直接积分法求解了三维瞬态扩散方程,因此未使用反应性。该设备被视为封闭的冷却剂系统,因此,有必要在低至大气压的压力下应对热工液压行为。在低压下,热工水力方程的非线性会增强,因此需要一个热非平衡模型。为了满足在反应器中测得的初始压力分布,必须具有水分分离器模型,并考虑到随着流动面积变化的交界处的可逆压降。 THYDE-NEU中的参数中,除了C-1和C-2以外,还有热非平衡模型中的γ值,这与表示横截面表格中使用的冷却剂密度的方式有关。对于一对C-1和C-2,可以从参数上找到gamma的值,即gamma(C),这样THYDE-NEU可以重现以下实验事实:核心平均本地功率范围监控器输出R-APRM在0.63 s时达到0.95,以产生加扰信号。将使用γ(C)进行的计算之一与实验进行了比较。结果表明,空间动力学结果对旁通阀打开的时间特性很敏感。在使用的假设中,指出了在进一步执行灵敏度计算之前要仔细检查的那些假设。

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