摘要
以一体化全功率自然循环反应堆模拟实验回路为物理原型,建立了非惯性系下自然循环流动理论分析模型。分别计算了稳态、横摇、纵摇、横倾、纵倾、起伏以及复合运动条件下满功率的自然循环流动,分析了附加惯性力对流体作用的机理。结果表明,摇摆附加惯性力引起各段流体波动,但不是导致堆芯流量波动的直接原因;起伏改变驱动压头大小,各段流量波动一致;倾斜工况下,不同空间位置的流道流量变化不同,堆芯流速下降。
According to the simulation loop of Integrated natural circulation reactor, the mathematical model of natural circulation in non-inertial reference system is established, and the influence mechanism of ocean condition upon natural circulation is analyzed. Software is programmed to investigate the behaviors in the cases of rolling without heating power, static state with different power and rolling with heating power, and calculation results show that: the inertia force added by rolling causes the periodical fluctuating of the flow rate of channels, but it is not the direct reason of core flow fluctuation. The heave changes the driving head, and causes the same flow rate fluctuation of all channels. Inclining makes the core flow rate decrease, but the change of flow rate of different channels is different.
出处
《核动力工程》
EI
CAS
CSCD
北大核心
2010年第4期52-56,共5页
Nuclear Power Engineering
基金
国家自然科学基金项目(10872111)
国家杰出青年基金项目(50325620)
关键词
摇摆
自然循环
一体化自然循环反应堆
Rolling, Natural circulation, Integrated natural circulation reactor